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北航国新院2026年博士后招聘公告

浏览量:时间:2026-10-01

杭州市北京航空航天大学国际创新研究院(北京航空航天大学国际创新学院)〔简称“国新院”〕是由北京航空航天大学(简称“北航”)与杭州市人民政府共同举办的事业单位,支撑北航在杭州开展高水平国际化办学等各项工作,现已有各类教职员工近千人,本硕博各类学生超过5000人。

国新院博士后工作站是国家级博士后工作站,与北航博士后流动站紧密协同,面向全球招收优秀博士后。现有在站博士后规模已近300人,持续为国新院培养和输送优秀师资,打造北航杭州国际校园“人才蓄水池”。

国新院为在站博士后提供一流的学术指导、科研条件和薪酬待遇。目前国新院博士后工作站的合作导师队伍中,包含院士及国家级领军人才27人、国家级青年人才63人、北航正高级职称教师175人。国新院为各类博士后提供每年30万元至36万元的薪酬(含政府补贴),并给予一流科研设施和每人不少于10万元的科研经费保障。同时,博士后出站后留杭工作可申请杭州市、余杭区地方政府配套补贴(详见杭州市余杭区“海创未来·卓越博士后”腾飞计划、杭州城西科创大走廊创新发展专项资金管理办法等,各类政策按照政府最新规定执行)。具体招聘公告如下:

一、单位简介

2023年5月29日,北京航空航天大学杭州国际校园在杭州市余杭区正式建成启用,开启了北航“京杭两地三校园”建设世界一流大学的新篇章。作为杭州国际校园中的办学主体,国新院始终坚持人才引领发展战略,培养拔尖创新人才,推动科技自立自强,全力打造具有国际化特色、教育科技人才一体改革发展新高地。校园位于杭州市城西科创大走廊核心区域,紧邻杭州市西站枢纽和世界文化遗产良渚文化遗址。校园一期占地面积约1000亩,建筑面积77万平方米,教学实验环境一流、生活配套齐全、校园生态宜人,为师生提供了优良的学习生活环境和科研创新条件。

二、科研机构介绍

国新院坚持以高能级科研平台建设支撑高层次人才成长。围绕重点发展的“学域”,现已面向20个方向布局科教协同平台或科创中心,具体如下:

(一)自旋芯片与技术全国重点实验室/微纳科学与分析测试协同创新中心

自旋芯片与技术全国重点实验室致力于服务国家重大战略和服务区域经济发展,培养集成电路等方向紧缺人才,突破后摩尔时代集成电路关键技术,着力打造以自旋芯片为特色的国产全流程微纳加工及分析测试公共平台,主要开展后摩尔时代集成电路材料与物理、存储与存算器件、芯片集成工艺与设计、特色芯片表征与设备、微纳科学与分析测试等方向的研究。实验室秉承“矢志不渝、敢为人先、致真唯实、芯片报国”的“北航芯”精神,全力推进实体化建设及运行,已取得卓越成效。2023年,流片成功全球最大容量第三代自旋存储芯片“旋芯X1-1”。2024年研制全球首款反铁磁自旋存储芯片“旋芯X2”,成功研制新原理磁特性测量设备,量产国内首台8英寸超高真空多腔薄膜沉积系统。

(二)仿生界面材料科学全国重点实验室/仿生科学与技术科创中心

仿生界面材料科学全国重点实验室/仿生科学与技术科创中心聚焦国家重大战略需求中的界面基础科学问题,利用仿生手段,推进学科交叉融合,建设持续引领全球的仿生界面材料科学研究中心。研究界面基础物理机制与化学过程,发展复杂体系仿生界面浸润新理论和新技术,制备新型界面功能材料,发展仿生结构材料、仿生新能源、仿生3D打印、仿生机器人、仿生信息科学等系列引领性、颠覆性技术,为我国能源、环境、农业、资源、信息、新材料、低空经济、人工智能等领域的技术革命提供原始创新驱动力,抢占未来科学技术制高点。

(三)物理化学科教中心

物理化学科教中心旨在打造一套具有中外合作办学特色的基础实验科教体系,以培养“厚基础、强实践、重创新”的卓越工程师为目标,协同数理学科理论课程,涵盖力、热、光、电、磁、声等基础物理实验和综合化学创新性实验两大部分内容,打造包括基础实验室、专业仪器实验室、科研实验室在内的全方位开放体系中心,强化学生物理与化学基础,提升多学科知识交叉融合与迁移能力;加强学生理论联系实际能力,提高学生自主实践与协同创新能力;采用先进培养模式,配备先进科教设施,引育国内外优秀教研队伍,凝聚国际合作创新优势,面向现代高端自然科学与工程技术人才的培养需求,塑造学生严谨的科学素养和创新精神,建设一套培养具有全球视野、系统思维和协同创新能力高精尖人才的卓越体系,打造国际一流的实验科教协同创新中心。

(四)数据科学与智能计算科教中心

数据科学与智能计算科教中心围绕计算机、软件工程、网络安全、人工智能、数据科学、控制工程等重点学科方向及其交叉融合领域,系统推进教学科研基础设施建设,支撑建设了国新院智算底座和人工智能基座。平台致力于培养具备跨学科能力的“新工科”人才体系,服务智慧城市、医疗健康及气候行动等国家重大战略需求。

(五)工程师通用技术科教中心

工程师通用技术科教中心作为聚焦国际化人才培养、深化科教融汇与产教融合的核心教学科研阵地,以三大特色实验室为支柱构建起“中国根基+法国智慧+国际前沿”的立体化培养体系。中国特色工程训练实验室锚定国家战略需求,通过“基础-进阶-创新”阶梯式训练,将传统金工、电工电子技能与智能制造、数字孪生、机器人等前沿模块无缝衔接,架起工程理论与实践的关键桥梁;法国特色工业科学实验室由北航国际创新研究院与法国UPSTI共建,践行“理论-设计-制造-验证”全流程教学与问题导向模式,鼓励学生自主实践,提高学生综合分析、创新设计及解决复杂工程问题的能力;北航-中央理工集团碳中和联合实验室(BCC Lab)作为落实中法两国元首共识的重要成果,为全球碳中和领域技术创新与人才培养提供顶尖合作平台。三大实验室协同发力,为国际化工程人才培养注入多元动能。

(六)低空运载系统科教中心

低空运载系统科教中心致力于服务低空经济新兴支柱产业发展,依托北航空天学科优势,组建产教融合领军团队。平台聚焦低空智能运载装备科学研究、工程应用与成果转化,重点攻关新能源动力推进、高可靠智能飞行控制、低空坠撞安全等关键技术,同步建设模块化低空共性测试能力,构建低空装备特色课程体系,引领“低空智能运载”一级学科建设。开展大学生飞行汽车、方程式赛车等系列科创活动,致力于培养适应新质生产力的领军领导人才,打造国际领先的低空运载系统科教中心。

(七)智能测试与健康管理产教协同创新中心

智能测试与健康管理产教协同创新中心服务于国家战略要求,围绕高端装备故障及安全,依托行业领域优势、人才队伍优势、区域政策优势,建设具有国际影响力的产教融合高水平科研平台。中心以“AI赋能”为核心,致力于解决高端装备的测试、检测、评估、验证,以及智能诊断、预测、运维等“最后一公里”瓶颈难题,打造产、学、研、用一体化深度融合的智能测试与健康管理技术产教协同平台,开展半导体智能测试与寿命评估、高端装备故障诊断与健康管理、AI赋能测试与运维等核心技术攻关,研发自主可控半导体智能测试设备、智能运维产品、AI大模型产品,积极推动领域技术产业化与规模化应用,服务国家质量强国战略和区域经济高质量发展。

(八)智慧民航科创中心

智慧民航科创中心面向未来民用航空发展需求,以安全为底、智慧为主,建设覆盖飞机、发动机、机载系统适航、维修、运营、管理的数智化科教协同平台,主要开展数字化适航分析与验证、飞行器设计、航空宇航推进理论与工程、风险评估与智能预测、故障预测与健康管理、运营弹性优化、空中交通仿真与管理、机场枢纽选址、机场数智运营与管理机制设计、低空经济、低空航线规划、低空站点选址、无人机集群协同与编队、模式识别与智能系统、故障诊断、复杂网络、多主体建模、大语言模型赋能运筹优化、大语言模型在民航中的应用等领域的研究。

(九)医工交叉科创中心/高端医疗装备与器械国家医学攻关产教融合平台

北航国新院医工交叉科创中心于2024年5月成立,依托北航生物医学工程A+学科,以临床需求为牵引,以“数字化、智能化、精准化”为引擎,构建“生物前沿基础、医工先进技术、医学临床应用”全链条体系,引育国际顶级人才、开拓工程医学边界,在杭州国际校园建立世界一流、生物智能化、产科教全生命周期的顶级医工基地,推动长三角乃至全国医学前沿创新、高端医疗器械产业集群形成新质生产力。

(十)大飞机科创中心/大飞机研究院(杭州)

大飞机科创中心/大飞机研究院(杭州)于2024年1月19日正式揭牌成立,中国商飞C919总设计师吴光辉院士、北航向锦武院士担任院长,中国商飞C929总设计师陈迎春教授受聘为首席科学家,现有国家级人才3人,正高11人、副高23人、博士后26人。大飞机研究院(杭州)聚焦大飞机设计、适航、试飞、运维等方向,下设大飞机智能试飞研究中心、大飞机适航与安全研究中心、高端制造技术研究中心、工业软件中心,开展学科交叉和前沿技术研究,支撑适航设计/验证/装备研发、飞行试验/高端制造等学科方向建设。大飞机科创中心/大飞机研究院(杭州)着力打造能承担重大任务、重大项目的高端平台,为中国大飞机事业贡献力量。

(十一)人工智能科创中心

人工智能科创中心聚焦精准智能、可信智能与具身智能三大方向,服务国家战略与区域经济,致力于突破AI“卡脖子”问题,构建“基础研究-技术攻关-产业应用”全链条创新体系,建设国际一流团队,培养高端AI人才。精准智能以跨尺度感知与自适应智能为核心,围绕跨尺度智能和类脑智能,构建脑启发多模态平台,解析人脑数理逻辑与神经机制,发展融合先验知识的智能方法,形成高精度、高稳定、可信赖的理论体系。可信智能致力于构建安全可信、可解释的AI系统,聚焦神经网络可解释性、大模型训练推理机制与隐私保护,融合内生机理与外部评估,建立可靠智能架构。具身智能主攻具身智能与群体协同,研发高保真仿真与分布式训练系统,大小模型协同控制及机理嵌入的群智决策,实现智能体精准操作与多体高效协作,打造强鲁棒、高泛化、优决策的解决方案,推动智能家居、低空经济、灾害应急等应用,赋能可持续发展。

(十二)国际太赫兹科创中心

国际太赫兹科创中心面向世界科学前沿和国家重大需求,针对太赫兹领域缺乏高效率辐射源、核心器件和系统集成技术等国际公认科学难题与技术挑战,开展高功率强场太赫兹光源理论与技术、新材料与新结构太赫兹器件、太赫兹纳米和近场光学、太赫兹系统集成技术及应用等研究,以项目为载体,用高水平科学研究结合高层次国际学术交流,培养高质量太赫兹卓越人才,推动高协同转移转化,打造国际太赫兹科学研究圣地、人才培养基地、成果转化高地。

(十三)国际仿真技术科创中心

国际仿真技术科创中心聚焦工业仿真软件与系统,数字孪生建模与可信评估、大模型驱动的智能系统设计、智能仿真、仿真大模型、建模仿真语言、基于建模仿真的系统工程、可靠性系统工程数智仿真、虚实协同、工业互联网仿真与决策等领域,面向数字化转型国家重大战略和区域经济发展,形成了一批在国际、国内具有重要影响力的科研成果。中心与美、加、德、英、意、新、葡、波等多个国家大学与研究机构开展了深入的国际合作,协同亚洲仿真联盟、中国仿真学会,致力于培养先进仿真领域复合型、高层次、国际化专业人才。

(十四)空间环境与行星科学国际研究中心

空间环境与行星科学国际研究中心专注于空天技术前沿的研究,致力于解决空间环境与行星科学、飞行器航空安全等领域的重大科学问题。通过跨学科的研究方法,将地质学、行星科学、材料学和大气科学等多个学科相融合,推动地球科学和行星科学领域的创新和发展。中心建有月球表面环境着陆器冲蚀模拟装置、超高速陨石冲击破碎特性试验系统、航空发动机高温损伤平台、混气实验室等四大特色科研平台,具备从月尘沉积冲蚀模拟、超高速撞击动态碎裂机制解析,到高温沉积腐蚀原位观测、多气氛材料性能测试的全链条研究能力,致力于打造国际领先的空间环境与行星科学创新高地。

(十五)碳中和国际研究中心

碳中和国际研究中心是由杭州市北京航空航天大学国际创新研究院(北京航空航天大学国际创新学院)组建,面向国家“双碳”战略和国际学术前沿,覆盖航空航天、电力、冶金等行业低碳减排全环节的新型科教协同创新机构。中心下设四个研究方向:新能源与新材料方向,聚焦光伏、储能、氢能及燃料电池和新型功能材料,支撑能源侧减排;绿色能源动力方向,研究可持续航空燃料燃烧与排放、航空混合动力及机场降碳技术;能源测量与碳计量方向,开展CCUS链仪器测量、多相流检测、燃烧与污染物监测及智能碳计量;碳政策与管理方向,围绕能源—经济—环境系统建模,研究碳足迹、碳市场与低碳政策。中心汇聚院士及国家级人才,提供跨学科平台和产学研联合培养条件,诚邀优秀博士后加入。

(十六)绿色光子国际研究中心

绿色光子国际研究中心致力于高效低碳光子学技术前沿创新,通过特种光源与微纳光学器件等核心技术的持续突破与融合创新,为先进制造与生物医学检测产业的高端化、智能化、绿色化转型升级提供核心驱动力与坚实的技术支持。中心以国际化视野和跨学科融合为特色,聚焦绿色产业应用,推动可持续光子技术探索与产业化转化,打造国际一流光子学研究中心。通过建设开放共享的科研与产业协同平台,推进产学研深度融合,构建以企业需求为导向、科研创新为核心的创新生态。同时重视高层次人才培养与汇聚,致力于打造具备前沿视野与创新能力的光子学人才队伍,为绿色发展和产业升级提供持续支撑。

(十七)数学交叉国际研究中心

数学交叉国际研究中心下设三个实验室:中法数学实验室、中巴数学实验室和暗物质精准智能实验室。中法数学实验室通过引进以法国数学家为主的国际高端人才和具有国际竞争力的青年学术人才组建科研团队,开展面向世界科技前沿的基础数学研究与面向国家重大需求的应用数学研究,推动产出一批基础数学原创成果,促进应用数学学科交叉创新引领作用。中巴数学实验室由北航和巴西纯数学与应用数学国家研究所联合成立,旨在组建联合科研团队,开展基础数学、应用数学、数据科学和人工智能等领域的基础与应用研究,增进双方师生互访,实现优势互补、协同创新的双赢效果。暗物质精准智能实验室2023年获批教育部国际合作联合实验室,围绕暗物质本质等世界科技前沿问题,开展暗物质智能的数学机理、内嵌数理特征的智能计算方法、复杂系统行为智能分析与预测、高能物理实验物理分析及计算等领域的研究。

(十八)智能系统与人形机器人国际研究中心

智能系统与人形机器人国际研究中心面向智能机器人技术创新引领及产业生态构建的国家重大需求,把握国内外前沿基础科学交叉研究的发展趋势,聚焦机器人空间认知与具身交互技术、精密智能制造机器人、多机器人协同系统、空间在轨服务机器人等关键领域开展研究,以“科教融合、产业推动”理念打造新型科创平台,通过“基础研究-技术攻关-成果转化”全链条协同,为服务机器人入户、特种环境作业、智慧物流、应急救援、智能精密制造、卫星在轨维护、空间碎片清除等多元应用场景提供核心理论与技术支撑,着力培养具备跨学科和国际视野的机器人工程复合型高层次人才,推动智能机器人产业向价值链高端跃升。

(十九)复杂科学国际研究中心

复杂科学国际研究中心面向国家在复杂系统调控、基础科学、新型人工智能及前沿交叉科学等领域的重大战略需求,坚持系统观念,把握国际复杂性科学与前沿交叉基础研究的发展趋势。中心由诺贝尔物理学奖得主乔治·帕里西(Giorgio Parisi)教授领衔作为首席科学家,联合多位欧洲科学院院士共同创建,深度聚焦统计物理与无序系统、复杂科学与智能、经济物理与复杂网络、仿生集群智能与空天网络,等前沿方向开展高水平研究。依托世界级导师团队、顶尖计算平台与宽带通信实验设施,为复杂物理系统建模、多智能体协同控制、群体决策博弈、社会经济系统量化分析、空天跨域异构组网与韧性重构等多元前沿场景提供核心理论方法与核心技术支撑,着力培养兼具扎实数理功底、跨学科创新思维与全球胜任力的复合型高层次科研人才,打造立足中国、辐射全球的复杂性科学学术高地与对外合作枢纽。

(二十)联合国附属空间科技教育亚太区域中心(中国)

联合国附属空间科技教育亚太区域中心(中国)在遥感与地理信息系统、卫星通信、全球导航卫星系统、小卫星技术、空间法律与政策、空间科学与环境、航天项目管理等七个空间技术应用专业方向提供硕博士学历教育、短期培训,以及开展国际交流和科技合作。正在与国内众多空间科技领域知名企业共建产学研平台,推进全球空间科技教育网络和区域中心联盟建设。

三、招聘计划和条件

国新院2026年计划公开招聘博士后120人,具体招聘计划详见附件1。

博士后应聘人员应具备以下条件:

(一)拥护和遵守国家制度法规,品学兼优,身体健康,具有良好的学术道德及较高的科研水平;

(二)具有博士学位和学历,且获得博士学位年限一般不超过两年;申请从事第二站及以上的博士后,获得博士学位的年限不受限制;

(三)年龄一般不超过35周岁(含35岁);

(四)符合国新院各教学科研机构招聘要求;

(五)能够在站期间全职从事博士后研究工作。

四、招聘程序

(一)报名

1.报名时间:自公告发布之日起直至相应岗位落实聘用人员为止。

2.报名方式:应聘者通过电子邮件向邮箱postdoc_h3i@buaa.edu.cn发送简历等应聘材料,邮件主题请注明“博士后应聘+岗位编号+姓名”,并提供相关的电子佐证材料,包括:

(1)个人简历。

(2)杭州市北京航空航天大学国际创新研究院(北京航空航天大学国际创新学院)博士后报名表(附件2)、杭州市北京航空航天大学国际创新研究院(北京航空航天大学国际创新学院)博士后应聘信息汇总表(附件3)。

(3)学术水平及科研代表性成果证明材料(论文、专著、专利等)。

(4)国外留学人员须提供经教育部留学服务中心认证的《国外学历学位认证书》扫描件。

(5)其他需要提交的证明材料。

报名材料投送成功与否,以是否收到自动回复为准。

(二)材料审核

国新院组织专家对符合资格条件的申请人进行初评,主要评估其学术水平、教学科研或相关工作经历、发展潜力、学科方向需求匹配度等,确定通过人员名单,通过电子邮件向报名人反馈初评结果。

(三)综合考核

自公告发布之日起,国新院各平台或中心根据报名情况分期分批组织考核。考核以面试形式开展,考核内容由专家组根据岗位职责、专业要求拟定,通过专业技能测试、学术报告、现场答辩等方式进行。

(四)录用体检

考核通过人员需到三级以上医院进行体检,国新院对考核通过且体检合格人员发放录取通知书。

五、支持政策

(一)薪酬待遇

国新院为博士后提供具有竞争力的薪酬待遇,A类博士后预计年收入36万元,B类博士后预计年收入33.6万元,C类博士后预计年收入30-33.6万元(均含政府补贴)。

(二)科研保障

1.提供一次性科研启动经费(含政府补贴)。

2.提供一流的科研实验平台,实验办公空间,支持建设个性化科研实验平台。

3.对获得中国博士后科学基金资助和省级博士后科研项目资助的博士后给予配套资助(含政府补贴)。

4.鼓励并支持申报各类人才项目和科研项目。

(三)职业发展

1.建立优秀博士后出站留院工作绿色通道,对入选博新计划或取得国新院A+业绩的博士后,优先聘任至国新院专任教师各岗位系列。

2.对于出站留浙工作博士后,在站期间能够圆满完成研究课题,并取得科研成果,可按照浙江省人社厅有关规定直接申请认定浙江省自然科学研究系列副研究员;业绩贡献突出并留院工作者,可获得北航相应系列职称。

(四)生活保障

1.国新院为在站博士后提供校内博士后公寓;

2.校园内食堂、超市、文体设施、医务中心(24小时)等综合服务保障;

3.协助博士后按相关规定落户杭州市;

4.协助博士后申请认定杭州市高层次人才:博士后科研项目结题后,获得设区市级以上科技成果(奖励),或取得授权发明专利(前3位完成人),或制定行业标准或国家标准(前3位完成人)可认定为杭州市D类人才,可申请购房补贴100万元;

5.协助博士后申请政府各类补贴,包括但不限于在站生活补贴、出站留(来)余杭博士后安家补助等。

(以上各类支持政策按政府或国新院最新规定执行)

六、联系方式

关于本次招聘具体事宜,可通过邮件咨询。

科研机构 联系邮箱
自旋芯片与技术全国重点实验室/微纳科学与分析测试协同创新中心 XYLin@buaa.edu.cn
仿生界面材料科学全国重点实验室/仿生科学与技术科创中心 liumingzhu@buaa.edu.cn
物理化学科教中心 liminliu@buaa.edu.cn
数据科学与智能计算科教中心 fei.jiang@buaa.edu.cn
工程师通用技术科教中心 liulei5233@buaa.edu.cn
低空运载系统科教中心 haiying@buaa.edu.cn
智能测试与健康管理产教协同创新中心 songdengwei@buaa.edu.cn
智慧民航科创中心 ruiqili@buaa.edu.cn
医工交叉科创中心/高端医疗装备与器械国家医学攻关产教融合平台 lizhenwang@buaa.edu.cn
大飞机科创中心/大飞机研究院(杭州) gplin@buaa.edu.cn
人工智能研究中心 jimengqi@buaa.edu.cn
国际太赫兹科创中心 xiaojunwu@buaa.edu.cn
国际仿真技术科创中心 zhanglin@buaa.edu.cn
空间环境与行星科学国际研究中心 songwj@buaa.edu.cn(中国籍)DBDingwell@buaa.edu.cn(外籍)
碳中和国际研究中心 bhp24001@buaa.edu.cn
绿色光子国际研究中心 xiayu@buaa.edu.cn
数学交叉国际研究中心 chenqi.mou@buaa.edu.cn
智能系统与人形机器人国际研究中心 dongyuli@buaa.edu.cn
复杂科学国际研究中心 zhaozl@buaa.edu.cn
联合国附属空间科技教育亚太区域中心(中国) tanym@buaa.edu.cn

备注:本招聘公告自发布之日起生效。原2025年3月6日发布的《北京航空航天大学国际创新学院博士后招聘公告(人才政策加码升级)》同时废止。本公告未尽事宜,按政府及国新院最新相关规定执行。

Hangzhou International Innovation Institute of Beihang University (H3I) 2026 Postdoctoral Recruitment Announcement

Hangzhou International Innovation Institute of Beihang University (referred to as "H3I") is a public institution jointly established by Beihang University (referred to as "Beihang") and the People’s Government of Hangzhou Municipality. It supports Beihang to carry out high-level international education and other work in Hangzhou. At present, it has nearly 1,000 faculty and staff members of various types, and more than 5,000 undergraduate, master’s, and doctoral students.

The Postdoctoral Workstation of H3I is a national-level postdoctoral workstation. Working in close synergy with the postdoctoral mobile station of Beihang University, it recruits outstanding postdoctoral researchers worldwide. The number of postdocs currently on site has reached nearly 300. The workstation continuously cultivates and supplies outstanding faculty for H3I, building a "talent reservoir" for Beihang University Hangzhou International Campus.

H3I provides postdoctoral researchers with first-class academic supervision, research conditions and remuneration packages. The team of co-supervisors at the H3I Postdoctoral Workstation includes 27 academicians and national leading talents, 63 national young talents, and 175 Beihang faculty members with senior professional titles. H3I offers postdoctoral researchers an annual remuneration ranging from RMB 300,000 to RMB 360,000 (including government subsidies), first-class research facilities, and guaranteed research funding of no less than RMB 100,000 per person. In addition, postdocs who remain employed in Hangzhou after completing their postdoctoral tenure may apply for supporting subsidies issued by the Hangzhou Municipal and Yuhang District governments (please refer to the Yuhang District "Haichuang Future · Outstanding Postdoctoral" Tengfei Program, Special Fund Management Measures for Innovation and Development of the Hangzhou West Science and Technology Innovation Corridor and other relevant policies). All policies shall be implemented in accordance with the latest government regulations). Detailed recruitment information is set forth below:

I. Institutional Profile

H3I was inaugurated on May 29, 2023, marking a new chapter for Beihang University to develop a world-class university under its "Three Campuses in Beijing and Hangzhou" layout. Located on the Hangzhou International Campus, H3I adheres to the talent-driven development strategy, cultivates top-tier innovative talents, advances self-reliance and strength in science and technology, and strives to build an internationally distinctive highland integrating education, science and technology, and talent development.

Situated in the core area of the Hangzhou West Science and Technology Innovation Corridor, the campus is adjacent to Hangzhou West Railway Station and the World Cultural Heritage Liangzhu Archaeological Site. Covering a total land area of 1,000 mu with a total construction area of 770,000 square meters in Phase I, the campus boasts world-class teaching and experimental facilities, complete living amenities and a pleasant ecological environment, delivering superior conditions for research and study.

II. Platform Introduction

H3I underpins the growth of high-caliber talents through the development of high-level research platforms. Centered on its key academic domains, it has established education-research collaborative platforms or sci-tech innovation centers covering 20 research directions, as detailed below:

(1) State Key Laboratory of Spintronics/Micro-nano Science and Analysis Innovation Center (SKL Spin/YHNano)

Dedicated to serving major national strategies and regional economic development, SKL Spin/YHNano cultivates urgently needed talents in integrated circuits and breaks through core integrated circuit technologies in the post-Moore era. It builds a domestic full-process public platform for micro-nano processing and analytical testing featuring spintronic chips, focusing on research covering integrated circuit materials and physics, storage and computing-in-memory devices, chip integration processes and design, characterization and equipment for specialized chips, and micro-nano science and analytical testing. Upholding the Beihang Spintronics Spirit of "Unwavering Dedication, Pioneering Courage, Seeking Truth and Realizing Chip Development for the Nation," the laboratory has achieved remarkable progress in physical construction and operation: In 2023, it taped out X1-1, the world’s largest-capacity third-generation spin storage chip; In 2024, it developed X2, the world’s first antiferromagnetic spin storage chip, a new-principle magnetic property measurement instrument, and domestically the first mass-produced 8-inch ultra-high vacuum multi-chamber thin film deposition system.

(2) State Key Laboratory of Bioinspired Interfacial Materials Science / Bioinspired Science Innovation Center (BSIC)

Driven by national strategic priorities in energy, environment, and information, BSIC, also known as the State Key Laboratory of Bioinspired Interfacial Materials Science, will use bioinspired approaches to study novel interfacial materials, thereby promoting interdisciplinary integration and the development of new materials for diverse applications. This platform takes advantage of the accumulated influence of Beihang University in bioinspired science, aiming at the international scientific frontiers, carrying out research oriented to the cross-fusion of disciplines with extensive international cooperation, overcoming obstacles of disciplinary fusion, supporting the cross-fusion of fundamental disciplines such as chemistry, transportation, materials, computer science, mechanical engineering and so on, and promoting the application and transformation of a batch of advanced scientific and technological achievements. This will enable the development of bioinspired technologies for ultralow-energy-consuming materials, facilitating sustainable synthesis, energy-efficient conversion, and low-power information transmission. Our mission is to achieve several major scientific and technological breakthroughs and establish a series of cutting-edge directions internationally.

(3) Fundamental Physics and Chemistry Laboratory (FPCL)

The Fundamental Physics and Chemistry Laboratory (FPCL) undertakes the experimental teaching of fundamental physics and chemistry, and carries out theoretical and experimental research in the fields of novel quantum states of matter, materials physics and chemistry, surface and interface science, and low-dimensional functional materials and devices, so as to support and lead the collaborative innovation and development of quantum information, energy, aerospace and other related fields. FPCL aims to build a comprehensive open system center including basic laboratories, professional instrument laboratories and scientific research laboratories, in order to strengthen students' foundation in physic and chemistry, and enhance their ability to cross-integrate and transfer knowledge from multiple disciplines; in order to strengthen students' ability to connect theory with practice and enhance their capacity for independent practice and collaborative innovation. By adopting advanced training models, equipped with advanced scientific and educational facilities, introducing outstanding domestic and international teaching and research talents, and gathering the advantages of international cooperation and innovation, we aim to meet the training demands of modern high-end engineering and technical talents. We will shape students' rigorous scientific literacy and innovative spirit, and build an outstanding system for cultivating high-precision and top-notch talents with a global perspective, systematic thinking, and collaborative innovation capabilities. Our ultimate goal is to build an international first-class experimental science and education collaborative innovation center.

(4) Data Science and Intelligent Computing Laboratory (DSICLab)

Centered on core disciplines and interdisciplinary integration such as computer science, software engineering, cybersecurity, artificial intelligence, data science and control engineering, DSICLab advances the construction of teaching and research infrastructure, supporting the development of H3I’s intelligent computing base and artificial intelligence foundation. Committed to cultivating an interdisciplinary talent system for "new engineering," the platform serves major national strategic demands including smart cities, medical health and climate action.

(5) Industrial Science and Engineering Technology Laboratory (ISETLab)

As a core teaching and research hub for international talent cultivation and integrated education-industry development, ISETLab adopts a three-dimensional training system featuring "Chinese roots + French expertise + international frontiers" supported by three characteristic laboratories: Chinese Characteristic Engineering Training Laboratory: Addresses national strategic demands via step-by-step training covering foundational, advanced and innovative modules, seamlessly integrating traditional metalworking, electrical and electronic skills with cutting-edge modules such as intelligent manufacturing, digital twins and robotics, bridging engineering theory and practice. French Characteristic Industrial Science Laboratory: Co-built by H3I and France’s UPSTI, it adopts a full-process teaching and problem-oriented model of "Theory – Design–Manufacturing–Verification," encouraging independent practice to strengthen students’ capabilities in comprehensive analysis, innovative design and solving complex engineering challenges. Beihang-Central Engineering Group Carbon Neutrality Joint Laboratory (BCC Lab): A key outcome implementing the consensus reached by Chinese and French heads of state, delivering a top-tier collaborative platform for technological innovation and talent cultivation in global carbon neutrality. The three laboratories work in synergy to inject diverse momentum into international engineering talent training.

(6) Low-altitude Vehicle Systems Laboratory (LVSLab)

Serving the emerging pillar industry of the low-altitude economy and drawing on Beihang’s aerospace disciplinary strengths, LVSLab builds industry-education integrated leading teams. It focuses on scientific research, engineering application and achievement transformation of low-altitude intelligent transportation equipment, tackling core technologies including new energy power propulsion, highly reliable intelligent flight control and low-altitude crash safety. It simultaneously develops modular general testing capabilities for low-altitude equipment, constructs a distinctive curriculum system for low-altitude vehicles, and leads the development of the first-level discipline "Intelligent Low-altitude Transportation". It organizes science and innovation activities such as student flying cars and formula racing vehicles, cultivating leading talents adapted to new productive forces and building an internationally leading teaching and research center for low-altitude vehicle systems.

(7) Smart Testing and System Health Management Center (STSHM)

Responding to national strategic requirements focusing on high-end equipment faults and safety, STSHM builds an influential high-level industry-education integrated research platform with advantages in industry, talent and regional policies. Centered on AI empowerment, it addresses bottlenecks in testing, inspection, evaluation, verification, intelligent diagnosis, prediction and operation maintenance of high-end equipment. It integrates industry, academia, research and application to tackle core technologies such as semiconductor intelligent testing and life assessment, high-end equipment fault diagnosis and health management, and AI-empowered testing and operation maintenance. It develops independently controllable semiconductor intelligent testing equipment, intelligent operation and maintenance products and AI large-model products, advancing industrialization and large-scale application of relevant technologies to support the national strategy of quality power and high-quality regional economic development.

(8) Smart Aviation Center (SAC)

Responding to future civil aviation development demands with safety as the foundation and intelligence as the core, SAC establishes a digital collaborative teaching and research platform covering aircraft, engines, airborne system airworthiness, maintenance, operation and management. Its core research areas include digital airworthiness analysis and verification, aircraft design, aerospace propulsion theory and engineering, risk assessment and intelligent prediction, fault prediction and health management, operational resilience optimization, air traffic simulation and management, airport site selection, digital airport operation and management mechanism design, low-altitude economy, low-altitude route planning, low-altitude station site selection, UAV cluster coordination and formation flight, pattern recognition and intelligent systems, fault diagnosis, complex networks, multi-agent modeling, large language model-empowered operational optimization, and applications of large language models in civil aviation.

(9) Medical Engineering & Engineering Medicine Innovation Center (ME&EMIC) / National Medical Key Platform for Industry-Education Integration of High-End Medical Equipment and Devices

Founded in May 2024, ME&EMIC leverages Beihang University’s A+ discipline in biomedical engineering, guided by clinical demands and driven by digitalization, intelligence and precision. It forms a full-chain system covering cutting-edge biological fundamentals, advanced medical engineering technologies and clinical medical applications, recruits world-class talents, expands the boundaries of engineering medicine, and builds a world-leading, biologically intelligent, full-life-cycle obstetric and educational medical base on the Hangzhou International Campus. It drives frontier medical innovation in the Yangtze River Delta and nationwide and fosters new productive forces in high-end medical device industrial clusters.

(10)COMAC–Beihang Commercial Aircraft Innovation Center (Hangzhou) (COMAC–Beihang CAIC)

The COMAC-Beihang Commercial Aircraft Innovation Center (Hangzhou) was officially inaugurated on January 19, 2024. The Center is co-directed by Academician Wu Guanghui, Chief Designer of the COMAC C919, and Academician Xiang Jinwu of Beihang University. Professor Chen Yingchun, Chief Designer of the COMAC C929, serves as Chief Scientist. Faculty and research staff include three national-level distinguished experts, 11 professors, 23 associate professors, and 26 postdoctoral researchers.The Center focuses on key areas of commercial aircraft development, including design, airworthiness certification, flight testing, and operations and maintenance. It has established dedicated research units, including the Intelligent Flight Test Research Center, the Airworthiness and Safety Research Center, the Advanced Manufacturing Technology Research Center, and the Industrial Software Center. Through interdisciplinary and frontier technology research, these units build disciplinary capacity in airworthiness design, verification, equipment development, flight testing, and advanced manufacturing. Committed to undertaking major national missions and projects, the Center serves as a high-level platform dedicated to advancing China's commercial aviation program.

(11)Artificial Intelligence Innovation Center (AIIC)

Focusing on refined intelligence, trustworthy intelligence, and embodied intelligence, the AIIC addresses major national strategic needs and supports regional economic development. It aims to overcome critical bottlenecks in artificial intelligence, establish an integrated innovation system spanning basic research, technological breakthroughs, and industrial applications, build world-class research teams and cultivate high-caliber AI talent. 1. Refined Intelligence: Centered on cross-scale perception and adaptive intelligence, this research area develops brain-inspired multimodal platforms, investigates the mathematical principles and neural mechanisms underlying human intelligence, and advances knowledge-integrated intelligent methodologies. It aims to establish a theoretical framework characterized by high precision, stability, and reliability. 2. Trustworthy Intelligence: This research area develops safe, reliable, and interpretable AI systems, with a focus on neural network interpretability, the training and reasoning mechanisms of large models, and privacy protection. It aims to establish trustworthy intelligent architectures that integrate intrinsic mechanisms with external evaluation. 3. Embodied Intelligence: This research area explores embodied intelligence and swarm collaboration, develops high-fidelity simulation and distributed training systems, coordinated control methods for large and small models, and mechanism-informed decision-making methods for collective intelligence, enabling the precise operation and control of intelligent agents and efficient multi-agent collaboration. It delivers highly robust and generalizable solutions with optimized decision-making capabilities, supporting applications in smart homes, the low-altitude economy, emergency and disaster response, and other fields, thereby empowering sustainable development.

(12) Terahertz International Research Center (TIRC)

Facing global scientific frontiers and major national demands, TIIC addresses internationally recognized scientific and technical challenges in the terahertz fields including lack of high-efficiency radiation sources, core devices and system integration technologies. It conducts research on high-power strong-field terahertz light source theory and technologies, new material and new-structure terahertz devices, terahertz nanometer and near-field optics, terahertz system integration technologies and applications. Leveraging research projects, it combines high-level scientific research with international academic exchanges to cultivate outstanding terahertz talents, promote collaborative achievement transformation, and build an international hub for terahertz research, talent training and achievement commercialization.

(13) Simulation Technology Innovation Center (STIC)

Focused on industrial simulation software and systems, digital twin modeling and credible evaluation, large model-driven intelligent system design, intelligent simulation, simulation of large models, modeling and simulation languages, system engineering based on modeling and simulation, digital intelligent simulation for reliability system engineering, virtual-real collaboration, industrial internet simulation and decision-making, multiphysics simulation, our center delivers influential domestic and international research achievements aligned with national digital transformation strategies and regional economic development. It conducts in-depth international cooperation with universities and research institutions across the United States, Canada, Germany, the United Kingdom, Italy, Singapore, Portugal, Poland and other countries, collaborating with the Asian Simulation Alliance and the China Simulation Federation to cultivate compound, high-level and international professionals in advanced simulation.

(14) International Research Center for Geological and Planetary Sciences (GeoLab)

The International Research Center for Geological and Planetary Sciences (GeoLab) devotes itself to cutting-edge aerospace research and aims to address major scientific challenges in space environment, planetary science, aircraft flight safety and related fields. Adopting interdisciplinary research methodologies that integrate geology, planetary science, materials science, atmospheric science and other disciplines, the Center advances innovations and developments in earth science and planetary science. It hosts four distinctive research platforms, namely the lunar surface environment lander erosion simulation facility, the ultra-high-speed meteoroid impact fragmentation testing system, the high-temperature damage platform for aero-engines, and the mixed-gas laboratory. The Center possesses full-chain research capabilities covering lunar dust deposition and erosion simulation, analysis of dynamic fragmentation mechanisms under ultra-high-speed impacts, in-situ observation of high-temperature deposition and corrosion, as well as material performance testing under multi-gas atmospheres. It is committed to building a world-leading innovation hub for space environment and planetary science.

(15) International Research Center for Carbon Neutralization (IRCCN)

The International Research Center for Carbon Neutralization is a new-type collaborative innovation institution integrating science and education, established by the H3I. It is oriented toward the national “dual carbon” strategy and international academic frontiers, and covers the entire low-carbon emission reduction chain in aerospace, power, metallurgy, and other industries. The Center has four research directions: New Energy and New Materials, focusing on photovoltaics, energy storage, hydrogen energy and fuel cells, and novel functional materials to support energy-side emission reduction; Green-Energy Power, studying sustainable aviation fuel combustion and emissions, aviation hybrid power, and airport decarbonization technologies; Energy Measurement and Carbon Metrology, conducting instrumentation and measurement in the CCUS chain, multiphase flow metering, combustion and pollutant monitoring, and intelligent carbon metrology; and Carbon Policy and Management, which uses energy–economy–environment system modeling to study carbon footprints, carbon markets, and low-carbon policies. The Center brings together academicians and national-level talents, provides an interdisciplinary platform and industry-academia-research joint training conditions, and sincerely invites outstanding postdoctoral researchers to join.

(16) Sustainable Photonics Research Center (SPRC)

Sustainable Photonics Research Center (SPRC) is committed to pioneering high-efficiency and low-carbon sustainable photonics technologies. It aims to provide core driving force and solid technical support for the transformation and upgrading of Advanced Manufacturing and Biomedical Testing to high-end, intelligent and sustainable through continuous breakthroughs and integrated innovations in significant technologies of specialty light sources and micro-nano optical devices. With a global perspective and interdisciplinary integration as its hallmarks, the center focuses on sustainable industry applications, promotes the exploration and commercialization of sustainable photonics technologies, and aims to establish itself as a world-class photonics research center. Through the development of an open and shared platform for scientific research and industrial collaboration, it facilitates deep integration of industry, academia, and research, building an innovation ecosystem driven by enterprise needs and centered on scientific innovation. Simultaneously, the center emphasizes the cultivation and aggregation of high-level photonics talents, striving to build a world-leading team of photonics professionals with cutting-edge vision and innovative capabilities. This provides sustained support for sustainable development and industrial upgrading.

(17) International Research Center for Mathematics and Interdisciplinary Sciences (IRCMIS)

IRCMIS encompasses three laboratories: the Sino-French Mathematics Laboratory, the Sino-Brazilian Mathematics Laboratory and the Dark Matter Precision Intelligence Laboratory. Sino-French Mathematics Laboratory: Recruits international high-end talents primarily from France and globally competitive young academic researchers to form research teams, conducting cutting-edge fundamental mathematics research and application mathematics research aligned with major national demands, delivering original fundamental mathematics achievements and driving interdisciplinary innovation in applied mathematics. Sino-Brazilian Mathematics Laboratory: Jointly established by Beihang University and the National Institute for Pure and Applied Mathematics of Brazil, it builds joint research teams for fundamental mathematics, applied mathematics, data science and artificial intelligence research, facilitating mutual faculty and student exchanges to achieve complementary advantages and win-win collaborative innovation. Dark Matter Precision Intelligence Laboratory: Approved as a Ministry of Education International Joint Research Laboratory in 2023. It conducts research on mathematical mechanisms of dark matter intelligence, intelligent computing methods embedded with mathematical and physical features, intelligent analysis and prediction of complex system behaviors, and physical analysis and computation of high-energy physics experiments around the world frontier challenge of dark matter essence.

(18) International Research Center for Intelligent Systems and Robotics (IRCISR)

Responding to national major demands for innovative intelligent robot technologies and industrial ecosystem construction, IRCISR tracks global interdisciplinary frontiers and focuses on core fields including robot spatial cognition and embodied interaction technology, precision intelligent manufacturing robots, multi-robot collaborative systems and on-orbit space service robots. Guided by the philosophy of "integrated education-research and industrial advancement", it builds an innovative research platform coordinating the full chain of "Basic Research – Technological Breakthrough – Achievement Transformation". It delivers core theories and technical support for diverse application scenarios including household service robots, special-environment operation, smart logistics, emergency rescue, intelligent precision manufacturing, satellite on-orbit maintenance and space debris removal, cultivates interdisciplinary high-level robot engineering talents with international vision, and propels the intelligent robot industry to climb the high end of the value chain.

(19) International Research Center for Complexity Sciences (IRCCS)

The International Research Center for Complexity Sciences (IRCCS) aligns with national strategic priorities in complex system regulation and control, fundamental sciences, emerging artificial intelligence, and frontier interdisciplinary sciences. Upholding a systems perspective, the Center tracks international trends in complexity science and cutting-edge interdisciplinary research.

Spearheaded by Nobel Laureate in Physics Professor Giorgio Parisi as Chief Scientist and co-founded by several members of the Academia Europaea, the Center conducts high-level research deeply focused on cutting-edge directions: Statistical Physics and Disordered Systems, Complex Systems and Intelligence, Econophysics and Complex Networks, as well as Bionic Swarm Intelligence and Aerospace Networks. Leveraging a world-class supervisory team, state-of-the-art computing platforms, and broadband communication experimental facilities, the Center delivers core theoretical methodologies and key technological support for diverse frontier scenarios—including complex physical system modeling, multi-agent cooperative control, swarm decision-making and game theory, quantitative analysis of socio-economic systems, and cross-domain heterogeneous networking and resilient reconfiguration in aerospace systems. The Center is committed to cultivating high-caliber, multidisciplinary research talents endowed with solid foundations in mathematics and physics, interdisciplinary innovative thinking, and global competence, ultimately establishing an academic highland and international collaboration hub for complexity science based in China with global reach.

(20) Regional Center for Space Science and Technology Education in Asia and the Pacific (China) (Affiliated to the United Nations) (RCSSTEAP)

RCSSTEAP (China) offers master’s and doctoral degree programs, short-term training and international exchange and scientific cooperation across seven specialized space technology application tracks: remote sensing and geographic information systems, satellite communications, global navigation satellite systems, small satellite technology, space law and policy, space science and environment, and aerospace project management. It is partnering with numerous well-known domestic aerospace enterprises to build industry-university-research platforms and advance the construction of a global space science and technology education network and regional center alliance.

III. Recruitment Plan & Eligibility Criteria

H3I plans to recruit 120 postdoctoral researchers in 2026; detailed recruitment plans are listed in Annex 1.

Applicants for postdoctoral positions shall satisfy the following criteria:

1. Hold a doctoral degree, with the doctoral graduation date generally within the past two years; the graduation time limit does not apply to applicants pursuing their second or subsequent postdoctoral appointments.

2. Uphold national laws and regulations, possess good moral character, sound physical health, strong academic ethics and outstanding research capabilities.

3. Generally aged no more than 35 years old (inclusive).

4. Meet the recruitment requirements of each teaching and research institute under H3I.

5. Commit to full-time postdoctoral research during the appointment period; part-time concurrent employment for in-service personnel is prohibited.

IV. Recruitment Procedures

(1) Application

1. Application Period: From the release date of this announcement until all positions are filled.

2. Application Method: Applicants shall submit a resume and supporting documents via email to postdoc_h3i@buaa.edu.cn. The email subject must follow the format: "Postdoctoral Application + Position No. + Full Name". Electronic supporting materials shall include: (1) Personal resume (2) H3I Postdoctoral Application Form (Annex 2) & H3I Postdoctoral Applicant Summary Sheet (Annex 3) (3) Supporting documents for academic credentials and representative research outputs (papers, monographs, patents, etc.) (4) Other supplementary certification materials (5) For overseas returnees: a scanned copy of the Overseas Degree Verification Certificate issued by the Chinese Service Center for Scholarly Exchange. Receipt of the automatic reply email confirms the successful submission of application materials.

(2) Document Review

H3I organizes expert panels to conduct preliminary evaluation of eligible applicants, assessing academic performance, teaching/research experience, development potential and disciplinary matching degree. Eligible candidates will receive preliminary review results via email.

(3) Comprehensive Assessment

Recruiting departments organize assessments in batches based on application volume after the announcement release. Assessments are conducted via interviews, including professional skill tests, academic presentations and on-site defense as formulated by expert panels in accordance with job responsibilities and professional requirements.

(4) Employment & Physical Examination

Candidates passing the assessment shall complete a physical examination at a Grade III or above hospital, after which H3I issues official employment offers.

V. Support Policies

(1) Compensation & Benefits

The annual salary for Category A postdocs stands at approximately RMB 360,000, for Category B postdocs stands at approximately RMB 336,000, while Category C postdocs receive an annual salary of around RMB 300,000–336,000 (all figures include government subsidies).

(2) Research Support

1. One-time research startup funding (including government subsidies).

2. Top-tier research laboratories, office space, and support for building customized research experimental platforms.

3. Up to 1:1 matching funding (including municipal fiscal subsidies) for recipients of the China Postdoctoral Science Foundation grants and provincial postdoctoral research projects.

4. Full guidance and support for applications to various talent programs and research projects.

(3) Career Development

1. Fast-track permanent employment for outstanding postdocs upon completion of their appointment. Postdocs selected for the National Postdoctoral Innovative Talent Support Program or achieving Category A+ performance at H3I may be prioritized for full-time faculty positions via high-level talent recruitment channels.

2. Postdocs staying at H3I after their appointment period who successfully complete research projects and deliver qualified research outputs may directly apply for associate researcher qualification in the Zhejiang Provincial Natural Science Research Series. Those with outstanding contributions may participate in Beihang University’s title evaluation for corresponding senior professional titles.

(4) Living Support

1. H3I provides on-campus postdoctoral apartments for in-station postdocs.

2. Comprehensive supporting services are available on campus, including canteens, supermarkets, cultural and sports facilities, and a 24-hour medical center.

3. Assistance will be offered to postdocs for household registration in Hangzhou in accordance with relevant provisions.

4. H3I helps postdocs apply for the recognition as Hangzhou high-level talents. Upon completion of postdoctoral research projects, postdocs who have obtained scientific and technological achievements or awards at or above the prefecture-level city level, or been granted authorized invention patents (as the top 3 contributors), or formulated national or industrial standards (as the top 3 contributors), may be recognized as Hangzhou Class D Talents and apply for a housing purchase subsidy of RMB 1,000,000.

5. H3I assists postdocs in applying for various government subsidies, including but not limited to living subsidies during the postdoctoral tenure and settlement allowances for postdocs who stay in or come to Yuhang District after leaving the station.

All the above supporting policies shall be subject to the latest regulations issued by the government or H3I.

VI. Contact Information

For inquiries regarding this recruitment, please contact us via email.

Department / Platform Contact Email
State Key Laboratory of Spintronics/Micro-nano Science and Analysis Innovation Center
(SKL Spin/YHNano)
XYLin@buaa.edu.cn
State Key Laboratory of Bioinspired Interfacial Materials Science/Bioinspired Science Innovation Center (BSIC) liumingzhu@buaa.edu.cn
Fundamental Physics and Chemistry Laboratory (FPCL) liminliu@buaa.edu.cn
Data Science and Intelligent Computing Laboratory (DSICLab) fei.jiang@buaa.edu.cn
Industrial Science and Engineering Technology Laboratory (ISETLab) liulei5233@buaa.edu.cn
Low-altitude Vehicle Systems Laboratory (LVSLab) haiying@buaa.edu.cn
Smart Testing and System Health Management Center (STSHM) songdengwei@buaa.edu.cn
Smart Aviation Center (SAC) ruiqili@buaa.edu.cn
Medical Engineering & Engineering Medicine Innovation Center (ME&EMIC) lizhenwang@buaa.edu.cn
COMAC-Beihang Commercial Aircraft Innovation Center (Hangzhou) (COMAC-Beihang CAIC) gplin@buaa.edu.cn
Artificial Intelligence Innovation Center (AIIC) jimengqi@buaa.edu.cn
Terahertz International Research Center (TIRC) xiaojunwu@buaa.edu.cn
Simulation Technology Innovation Center (STIC) zhanglin@buaa.edu.cn
International Research Center for Geological and Planetary Sciences (GeoLab) songwj@buaa.edu.cn (Chinese applicants)
DBDingwell@buaa.edu.cn (Foreign applicants)
International Research Center for Carbon Neutralization (IRCCN) bhp24001@buaa.edu.cn
Sustainable Photonics Research Center (SPRC) xiayu@buaa.edu.cn
International Research Center for Mathematics and Interdisciplinary Sciences (IRCMIS) chenqi.mou@buaa.edu.cn
International Research Center for Intelligent Systems and Robotics (IRCISR) dongyuli@buaa.edu.cn
International Research Center for Complexity Sciences (IRCCS) zhaozl@buaa.edu.cn
Regional Center for Space Science and Technology Education in Asia and the Pacific (China) (Affiliated to the United Nations) (RCSSTEAP) tanym@buaa.edu.cn

Note: This Hangzhou International Innovation Institute of Beihang University (H3I) 2026 Postdoctoral Recruitment Announcement becomes effective upon release. The original Postdoctoral Recruitment Announcement of H3I (Upgraded Talent Policies), issued on March 6, 2025, is repealed. Matters not specified herein shall follow the latest applicable rules issued by the government and the H3I.