马仁敏Renmin Ma

(教授)


学位:博士学位
性别:男
毕业院校:北京大学
学历:研究生(博士)毕业
在职信息:在职
所在单位:凝聚态物理与材料物理研究所
电子邮箱:

近期代表性论文

21. R. M. Ma, Nanolaser technology with atomic-scale field localization, Nature Reviews Electrical Engineering 1, 632-633 (2024).

20. Y. H. Ouyang, H. Y. Luan, Z. W. Zhao, W. Z. Mao and R. M. Ma, Singular dielectric nanolaser with atomic-scale field localization, Nature 632, 287-293 (2024).  

19. R. M. MaReconfigurable moiré nanolaser arrays with phase synchronizationPHYSICS 53(1), 53-55 (2024).

18. H. Y. Luan, Y. H. Ouyang, Z. W. Zhao, W. Z. Mao and R. M. Ma, Reconfigurable moiré nanolaser arrays with phase synchronization, Nature 624, 282-288 (2023). 

17. R. M. Ma, Laser miniaturization——from maser, laser to spaser and beyond, PHYSICS 52, 633-639 (2023).  

16. R. M. Ma, H. Y. Luan, Z. W. Zhao, W. Z. Mao, S. L. Wang, Y. H. Ouyang and Z. K. Shao, Twisted lattice nanocavity with theoretical quality factor exceeding 200 billionTwisted lattice nanocavity with theoretical quality factor exceeding 200 billion. Fudamental Researchhttps://doi.org/10.1016/

j.fmre.2022.11.004.

15. Y. G. Sang, J. Y. Lu, Y. H. Ouyang, H. Y. Luan, J. H. Wu, J. Y. Li and R. M. Ma, Topological polarization singular lasing with highly efficient radiation channel. Nature Communications 13, 6485 (2022).

14. R. M. Ma,  Multitudes of twists. Nature Physics 17, 673-674 (2021).

13. X. R. Mao, Z. K. Shao, H. Y. Luan, S. L. Wang, R. M. Ma, Magic-angle lasers in nanostructured moiré superlattice. Nature Nanotechnology 16, 1099-1105 (2021).

12. H. Jing, R. W. Peng, R. M. Ma, J. He, Y. Zhou, Z. Q. Yang, C. Y. Li, Y. Liu, X. J. Guo, Y. Y. Zhu, D. Wang, J. Su, C. Sun, W. Z. Bao, and M. Wang, Flexible Ultrathin Single-Crystalline Perovskite Photodetector. Nano Letters 20, 7144-7151(2020).

11. Z. Q. Yang, Z. K. Shao, H. Z. Chen, X. R. Mao, R. M. MaSpin-Momentum-Locked Edge Mode for Topological Vortex Lasing. Physical Review Letters 125, 013903 (2020).

10. Y. Wang, J. Yu, Y. F. Mao, J. Chen, S. Wang, H. Z. Chen, Y. Zhang, S. Y. Wang, X. Chen, T. Li, L. Zhou, R. M. Ma, S. Zhu, W. Cai and J. Zhu, Stable, high-performance sodium-based plasmonic devices in the near infrared. Nature 581, 401-405 (2020).

9. H. Z. Chen, T. Liu, H. Y. Luan,  R. J. Liu, X. Y. Wang, X. F. Zhu, Y. B. Li, Z. M. Gu, S. J. Liang, H. Gao, L. Lu, L. Ge, S. Zhang, J. Zhu and R. M. MaRevealing the missing dimension at an exceptional point. Nature Physics 16, 571-578 (2020).

8. Z. K. Shao, H. Z. Chen, S. Wang, X. R. Mao, Z. Q. Yang, S. L. Wang, X. X. Wang, X. Hu and R. M. Ma, A high-performance topological bulk laser based onband-inversion-induced reflection. Nature nanotechnology 15, 67-72 (2020).

7. R. M. Ma, Lasing under ultralow pumping. Nature Materials 18, 1152-1153 (2019).

6. R. M. Ma and R. F. Oulton, Applications of Nanolasers. Nature Nanotechnology 14, 12-22 (2019).

5. S. Wang, H. Z. Chen and R. M. Ma, High performance plasmonic nanolasers with external quantum efficiency exceeding 10%. Nano Letters 18, 7942-7948(2018).       

4. J. H. Ahn, Z. J.  Xu, J. H. Bang, Y. H. Deng, T. M. Hoang, Q. K. Han, R. M. Ma and T. C. Li, Optically Levitated Nanodumbbell Torsion Balance and GHz Nanomechanical Rotor. Physical Review Letters 121, 033603 (2018).

3. Z. Q. Yang, Y.  H. Deng, X .W. Zhang, S. Wang, H. Z. Chen, S. Yang, J. Khurgin, N. X. Fang, X. Zhang, and R. M. Ma. High Performance Single Crystalline Perovskite Thin Film Photodetector. Advanced Materials 30, 1704333 (2018).

2. S. Wang, X. Y. Wang, B. Li, H. Z. Chen, Y. L. Wang, L. Dai, R. F. Oulton and R. M. Ma. Unusual Scaling Laws for Plasmonic Lasers beyond Diffraction Limit. Nature Communications 8, 1889 (2017).

1. H. Z. Chen, J. Q. Hu, S. Wang, B. Li, X. Y. Wang, Y. L. Wang, L. Dai and R. M. Ma. Imaging the dark emission of spasers. Science Advances 3, e1601962 (2017).