人才队伍

姓    名:
胡海
性    别:
职    务:
职    称:
研究员
通讯地址:
北京市海淀区中关村北一条11号
邮政编码:
100190
电子邮件:
huh@nanoctr.cn

 简历:
 

胡海,国家纳米科学中心研究员。长期从事光电子芯片设计与制造研究,聚焦于纳米光子材料与器件,共同提出极化激元路线用于片上光电互联以及发明新型极化激元晶体管。已在国际学术期刊发表 SCI 论文60余篇,第一 / 通讯作者论文包括Science 1 篇、Nat. Rew. Mater. 1篇、Nat. Photon. 1 篇、Nat. Mater. 2 篇、Nat. Nanotech. 1 篇、Nat. Commun. 4 篇、Sci. Adv. 1 篇、Phy. Rev. Lett. 1 篇和Adv. Materials 1篇等。申请中国国家发明专利 22 项,授权 18 项。相关成果得到国际同行高度评价,被超过 100 个科研团队正面引用 4200余次。研究成果被Science、Nature Nanotechnology和Nature Photonics等期刊高亮报道。目前作为负责人承担了科技部国家重大研发计划子课题、国家自然青年科学基金B类项目(优秀青年科学基金2023)、国家自然青年科学基金指南引导类原创探索计划项目、面上项目、青年基金、北京市自然科学基金面上项目和科技新星交叉项目等。依托上述研究成果,申请人获得2021年度北京市自然科学二等奖(第三),京博科技奖-京博优秀博士导师奖,北京市科技新星、中国光学十大社会事件、中国十大新锐科技人物、国家超级计算中心优秀应用奖、激光杂志社首届青云奖以及Rising stars of Newton等荣誉。


 研究领域:
 

1. 光电子芯片设计与制造

2.光电互联与电光调制器

3.硅基及异质集成光子学

4.微纳光子学与超构材料


 社会任职:
 

 获奖及荣誉:
 

 代表论著:
 

(1)    Hai Hu†*, Na Chen†, Hanchao Teng†, F. Javier García Abajo*, and Qing Dai*, et al. Gate-tunable negative refraction of mid-infrared polaritons, Science, 2023, 379, 558. https://www.science.org/doi/10.1126/science.adf1251

(2)    Hai Hu, Na Chen†, Hanchao Teng†, Zhuoxin Xue†, and Qing Dai*, et al. Transport of Polaritons in Hyperbolic Media. Nature Reviews Materials, 2026, 11, 554-574. https://www.nature.com/articles/s41578-026-00907-5

(3)    Hai Hu*, Maguang Zhu*, Qing Dai*, et al. Electrically programmable polariton symmetry breaking via non-Hermitian dissipation engineering, Nature Materials, 2026, published online. https://www.nature.com/articles/s41563-026-02734-z

(4)    Hai Hu*, Rainer Hillenbrand*, Qing Dai*, et al. Boundary-induced Excitation of Higher-order Hyperbolic Phonon Polaritons, Nature Photonics, 2025, 19,1225. https://www.nature.com/articles/s41566-025-01755-5

(5)    Hai Hu*, Andrea Alù*, Qing Dai*, et al. Flatland wakes based on leaky hyperbolic polaritons, Nature Materials, 2025, 24, 1569. https://www.nature.com/articles/s41563-025-02280-0

(6)    Hai Hu†*, Na Chen†, HanchaOTeng†, Renwen Yu*, F. Javier García de Abajo*, and Qing Dai*, et al. Doping-driven topological polaritons in graphene/α-MoO3 heterostructures, Nature Nanotechnology, 2022, 17(9): 940-946. https://www.nature.com/articles/s41565-022-01185-2

(7)    Hai Hu*, and Qing Dai*, et al. Steering and cloaking of hyperbolic polaritons at deep-subwavelength scales, Nature Communications, 2024, 15, 4463. https://www.nature.com/articles/s41467-024-48318-w

(8)    Hai Hu†*, F. Javier García de Abajo*, and Qing Dai*, et al. Active control of micrometer plasmon propagation in suspended graphene, Nature Communications, 2022, 13, 1465. https://www.nature.com/articles/s41467-022-28786-8

(9)    Hui Wang†, Hai Hu†, T-H Chung†, Qing Dai*,Chao-Yang Lu*, and Jian-Wei Pan*, et al. On-demand semiconductor source of entangled photons which simultaneously has high fidelity, efficiency, and indistinguishability, Physical Review Letters, 2019, 122, 113602. https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.122.113602

(10)   Hai Hu†, Xiaoxia Yang†, Tony Low*, Zhipei Sun*, and Qing Dai*, et al. Gas identification with graphene plasmons, Nature Communications, 2019, 10, 1131. https://www.nature.com/articles/s41467-019-09008-0

(11)   Hai Hu†, Xiaoxia Yang†, Kaihui Liu*, Zhipei Sun*, and Qing Dai*, et al. Far-field nanoscale infrared spectroscopy of vibrational fingerprints of molecules with graphene plasmons, Nature Communications, 2016, 7, 12334. https://www.nature.com/articles/ncomms12334

(12)   Chong Wang*, Hai Hu*, Qing Dai*, Hugen Yan*, and Yugui Yao*, et al. Observation of Van Hove singularity interband plasmons in the kagome metal CsV₃Sb₅ for strong light–matter interactions, Science Advances, 2025, 11, eadv4476. https://www.science.org/doi/abs/10.1126/sciadv.adv4476


 承担科研项目情况: