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李海粟

鎖定
李海粟,男,北京交通大學,電子信息工程學院,光波技術研究所,副教授 [1] 
中文名
李海粟
畢業院校
北京交通大學
學位/學歷
博士
專業方向
全光交換、特種光纖及器件、電子與通信工程(專業學位)
就職院校
北京交通大學
學術成果
  • 論文期刊
Refereed journals
1. H. Li, H. Xiao, J. Yuan, W. Wang, B. Yin, B. Wu, and Z. Han, "Terahertz polarization-maintaining subwavelength dielectric waveguides," J. Opt. 20, 125602 (2018).
2. H. Li, S. Atakaramians, J. Yuan, H. Xiao, W. Wang, Y. Li, B. Wu, and Z. Han, "Terahertz polarization-maintaining subwavelength filters," Opt. Express 26, 25617-25629 (2018).
3. H. Li, G. Ren, B. Zhu, Y. Gao, B. Yin, J. Wang, and S. Jian, "Guiding terahertz orbital angular momentum beams in multimode Kagome hollow-core fibers," Opt. Lett. 42, 179 (2017).
4. H. Li, G. Ren, Y. Gao, B. Zhu, J. Wang, B. Yin, and S. Jian, "Hollow-core photonic bandgap fibers for orbital angular momentum applications," J. Opt. 19, 045704 (2017).
5. H. Li, G. Ren, Y. Lian, B. Zhu, M. Tang, Y. Zhao, and S. Jian, "Broadband orbital angular momentum transmission using a hollow-core photonic bandgap fiber," Opt. Lett. 41, 3591-3594 (2016).
6. H. Li, G. Ren, S. Atakaramians, B. T. Kuhlmey, and S. Jian, "Linearly polarized single TM mode terahertz waveguide," Opt. Lett. 41, 4004-4007 (2016).
7. H. Li, S. Atakaramians, R. Lwin, X. Tang, Z. Yu, A. Argyros, and B. T. Kuhlmey, "Flexible single-mode hollow-core terahertz fiber with metamaterial cladding," Optica 3, 941-947 (2016).
8. H. Li, G. Ren, B. Yin, Y. Lian, Y. Bai, W. Jian, and S. Jian, "Modeling and optimized design of a parabolic-profile single-mode fiber with ultra-low bending loss and large-mode-area," Opt. Commun. 352, 84-90 (2015).
9. H. Li, G. Ren, Y. Gao, Y. Lian, M. Cao, and S. Jian, "Particle Swarm Optimization of Single-Mode Trench-Assisted Bend-Insensitive Fibers," IEEE Photon. Tech. Lett. 27, 1293-1296 (2015).
10. M. Cao, H. Li, M. Tang, Y. Mi, L. Huang, and G. Ren, "Forward stimulated Brillouin scattering in optical nanofibers," J. Opt. Soc. Am. B 36, 2079-2086 (2019).
11. H. Xiao, H. Li, B. Wu, Y. Dong, S. Xiao, and S. Jian, "Low-loss polarization-maintaining hollow-core anti-resonant terahertz fiber," J. Opt. 21, 085708 (2019).
12. J. Yuan, T. Ning, H. Li, L. Pei, J. Li, J. Zheng, and L. Wan, "Terahertz filters based on subwavelength polymer waveguide," Results Phys. 13, 102198 (2019).
13. M. Tang, H. Li, L. Huang, M. Cao, Y. Mi, L. Wu, and G. Ren, "Erbium-ring-doped fiber laser for transverse vector modes output," Optics & Laser Technology 115, 233-238 (2019).
14. H. Xiao, H. Li, B. Wu, Y. Dong, S. Xiao, and S. Jian, "Elliptical hollow-core optical fibers for polarization-maintaining few-mode guidance," Opt. Laser Technol. 48, 7-11 (2019).
15. Wu, M. Wang, Y. Dong, Y. Tang, H. Mu,H. Li, B. Yin, F. Yan, and Z. Han, "Magnetic field sensor based on a dual-frequency optoelectronic oscillator using cascaded magnetostrictive alloy-fiber Bragg grating-Fabry Perot and fiber Bragg grating-Fabry Perot filters," Opt. Express 26, 27628-27632 (2018).
16. H. Xiao, G. Ren, Y. Dong,H. Li, S. Xiao, B. Wu, and S. Jian, "A numerical analysis of GeO2-doped multi-step index single-mode fiber for stimulated Brillouin scattering," J. Opt. 20, 065701 (2018).
17. H. Xiao,H. Li, B. Wu, and S. Jian, "Polarization-maintaining terahertz bandgap fiber with a quasi-elliptical hollow-core," Opt. Laser Technol. 105, 276-280 (2018).
18. H. Xiao,H. Li, G. Ren, Y. Dong, S. Xiao, and S. Jian, "Polarization-Maintaining Hollow-Core Photonic Bandgap Few-Mode Fiber in Terahertz Regime," IEEE Photon. Tech. Lett. 30, 185-188 (2018).
19. H. Xiao,H. Li, and S. Jian, "Hole-assisted polarization-maintaining few-mode fiber," Opt. Laser Technol. 107, 162-168 (2018).
20. Y. Mi, G. Ren, Y. Gao,H. Li, B. Zhu, and Y. Liu, "Vector mode conversion based on tilted fiber Bragg grating in ring-core fibers," Opt. Commun. 410, 930-935 (2018).
21. Y. Liu, G. Ren, Y. Jiang, Y. Mi,H. Li, B. Zhu, Y. Yang, Y. Shen, and S. Jian, "Strain-independent fiber torsion and displacement sensor based on acoustically-induced fiber grating," Opt. Laser Technol. 99, 271-275 (2018).
22. Y. Dong, B. Wu, M. Wang, H. Xiao, S. Xiao, C. Sun,H. Li, and S. Jian, "Magnetic field and temperature sensor based on D-shaped fiber modal interferometer and magnetic fluid," Opt. Laser Technol. 107, 169-173 (2018).
23. Y. Xu, G. Ren, Y. Jiang, Y. Gao,H. Li, W. Jin, Y. Wu, Y. Shen, and S. Jian, "Bending effect characterization of individual higher-order modes in few-mode fibers," Opt. Lett. 42, 3343 (2017).
24. S. Xiao, Y. Wu, Y. Dong, H. Xiao, Y. Jiang, W. Jin,H. Li, and S. Jian, "Simultaneous measurement of refractive index and temperature using SMP in Sagnac loop," Opt. Laser Technol. 96, 254-258 (2017).
25. H. Xiao,H. Li, G. Ren, Y. Dong, S. Xiao, J. Liu, B. Wei, and S. Jian, "Polarization-Maintaining Supermode Fiber Supporting 20 Modes," IEEE Photon. Tech. Lett. 29, 1340-1343 (2017).
26. Y. Mi,H. Li, and G. Ren, "Vector mode conversion based on an asymmetric fiber Bragg grating in few-mode fibers," Appl. Opt. 56, 7305 (2017).
27. Y. Liu, Y. Mi, B. Zhu,H. Li, W. Jian, G. Ren, and S. Jian, "Core-cladding mode coupling of tilted long period fiber gratings in dual-mode fibers," Opt. Commun. 393, 238-243 (2017).
28. Y. Lian, G. Ren, Y. Jiang, B. Zhu,H. Li, X. Zheng, W. Ren, W. Jian, and S. Jian, "Ultralow Bending-Loss Trench-Assisted Single-Mode Optical Fibers," IEEE Photon. Tech. Lett. 29, 346-349 (2017).
29. Y. Jiang, G. Ren,H. Li, M. Tang, Y. Liu, Y. Wu, W. Jian, and S. Jian, "Linearly polarized orbital angular momentum mode purity measurement in optical fibers," Appl. Opt. 56, 1990 (2017).
30. Y. Jiang, G. Ren,H. Li, M. Tang, W. Jin, W. Jian, and S. Jian, "Tunable Orbital Angular Momentum Generation Based on Two Orthogonal LP Modes in Optical Fibers," IEEE Photon. Tech. Lett. 29, 901-904 (2017).
31. Y. Dong, G. Ren, H. Xiao, Y. Gao,H. Li, S. Xiao, and S. Jian, "Simultaneous Temperature and Strain Sensing Based on M-Shaped Single Mode Fiber," IEEE Photon. Tech. Lett. 29, 1955-1958 (2017).
32. S. Atakaramians, A. Stefani,H. Li, M. S. Habib, J. G. Hayashi, A. Tuniz, X. Tang, J. Anthony, R. Lwin, A. Argyros, S. C. Fleming, and B. T. Kuhlmey, "Fiber-Drawn Metamaterial for THz Waveguiding and Imaging (Invited)," J. Infrared Millim. Terahertz Waves 38, 1162-1178 (2017).
33. B. Zhu, G. Ren, B. Wu, Y. Gao,H. Li, and S. Jian, "Nanofocusing of hybrid plasmons-phonons-polaritons in a graphene-hexagonal boron nitride heterostructure," Opt. Lett. 41, 4578 (2016).
34. B. Zhu, G. Ren, Y. Gao,H. Li, B. Wu, and S. Jian, "Strong light confinement and gradient force in a hexagonal boron nitride slot waveguide," Opt. Lett. 41, 4991-4994 (2016).
35. X. Zheng, G. Ren, L. Huang,H. Li, B. Zhu, H. Zheng, and M. Cao, "Bending losses of trench-assisted few-mode optical fibers," Appl. Opt. 55, 2639-2648 (2016).
36. Y. Jiang, G. Ren, Y. Lian, Y. Liu, H. Liu,H. Li, W. Ren, W. Jian, and S. Jian, "Multilayer-core fiber with a large mode area and a low bending loss," Chin. Opt. Lett. 14, 120601 (2016).
37. Y. Gao, G. Ren, B. Zhu, L. Huang,H. Li, B. Yin, and S. Jian, "Tunable Plasmonic Filter Based on Graphene Split-Ring," Plasmonics 11, 291-296 (2016).
38. Y. Gao, G. Ren, B. Zhu, L. Huang,H. Li, H. Liu, and S. Jian, "Nanomechanical Plasmonic Filter Based on Grating-Assisted Gap Plasmon Waveguide," IEEE Photon. Tech. Lett. 28, 331-334 (2016).
39. B. Zhu, G. Ren, M. Cryan, Y. Gao,H. Li, Q. Wang, C. Wan, and S. Jian, "Biomimetic 'moth-eye' anti-reflection boundary for graphene plasmons circuits," J. Opt. 17, 125012 (2015).
40. B. Yin, Z. Liu, S. Feng, Y. Bai,H. Li, and S. Jian, "Stable single-polarization single-longitudinal-mode linear cavity erbium-doped fiber laser based on structured chirped fiber Bragg grating," Appl. Opt. 54, 6-11 (2015).
41. H. Liu, G. Ren, Y. Gao, B. Zhu, B. Wu,H. Li, and S. Jian, "Tunable Terahertz Plasmonic Perfect Absorber Based on T-Shaped InSb Array," Plasmonics 11, 411-417 (2015).
42. H. Liu, G. Ren, Y. Gao, B. Zhu,H. Li, B. Wu, and S. Jian, "Numerical investigation of a multi-functional optical device based on graphene-silica metamaterial," J. Mod. Opt. 63, 1099-1105 (2015).
43. H. Liu, G. Ren, Y. Gao, B. Zhu,H. Li, B. Wu, and S. Jian, "Ultrafast and low-power all-optical switch based on asymmetry electromagnetically induced transparency in MIM waveguide containing Kerr material," Opt. Commun. 353, 189-194 (2015).
44. B. Yin,H. Li, S. Feng, Y. Bai, Z. Liu, W. Peng, S. Liu, and S. Jian, "Temperature-independent and strain-independent twist sensor based on structured PM-CFBG," IEEE Photonic Tech. Lett. 26, 1565-1568 (2014).
Refereed conferences
1. H. Li, H. Xiao, and G. Ren, "Polarization-Maintaining Few-Mode Optical Fibers with Air-Hole Structures," in Asia Communications and Photonics Conference, IEEE, 2018.
2. H. Li, S. Atakaramians, and B. T. Kuhlmey, "Low loss and single mode metal dielectric hybrid-clad waveguides for Terahertz radiation," in SPIE Micro+Nano Materials, Devices, and Systems, 2015, 96680H.
3. M. Cao, M. Tang, Y. Mi, H. Li, W. Jian, and G. Ren, "Optical Forces of Forward Stimulated Brillouin Scattering in Optical Nanofibers," in Asia Communications and Photonics Conference, IEEE, 2018.
4. M. Tang, M. Cao, Y. Mi, H. Li, W. Jian, and G. Ren, "Three-layer-core fiber based erbium-doped fiber laser with azimuthally polarized beam output," in Asia Communications and Photonics Conference, IEEE, 2018.
5. T. Yan, Y. Jiang, H. Li, and W. Ren, "Switchable dual-mode all-fiber laser by using LPG and FBG," in Asia Communications and Photonics Conference, IEEE, 2018.
  • 專利
1. 用於偏振保持太赫茲波傳輸的空芯波導,ZL201821911526.5
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參考資料