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Lilin

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About

  • Department: State Key Laboratory of Precision Spectroscopy
  • Gender: male
  • Post:
  • Graduate School: Nanjing University
  • Degree: Ph. D.
  • Academic Credentials: Ph. D.
  • Tel:
  • Email: lli@lps.ecnu.edu.cn
  • Office:
  • Address: 500 Dongchuan Rd
  • PostCode: 200241
  • Fax:

Education

2008.9--2014.6 Nanjing University Ph. D

2001.9--2005.6 Wuhan University  B. E.



WorkExperience

2019--now   East China Normal University                Research Professor

2018--2019 Academia Sinica/Hong Kong PolyU       Postdoctoral scholar

2016--2018 Northeastern University                           Postdoctoral scholar

2014--2016 University of California, Berkeley           Postdoctoral scholar





Resume

Other Appointments

Research Fields

Enrollment and Training

Course

Scientific

Academic Achievements

Selected publications

1. Gigahertz-rate-switchable wavefront shaping through integration of metasurfaces with photonic integrated circuit

    Haozong Zhong, Yong Zheng, Jiacheng Sun, Zhizhang Wang, Rongbo Wu, Ling-en Zhang, Youting Liang, Qinyi Hua, Minghao Ning, Jitao Ji, Bin Fang, Lin Li, Tao Li, Ya Cheng, Shining Zhu

    Adv. Photonics, 6, 016005 (2024)

Our work was highlighted in Nature Photonics.


2. Subwavelength control of light transport at the exceptional point by non-Hermitian metagratings

    Yihao Xu*Lin Li*, Heonyeong Jeong*, Seokwoo Kim, Inki Kim, Junsuk Rho, and Yongmin Liu,

    Sci. Adv. 9, adf3510 (2023) (*contributed equally)


3. Harnessing Evanescent Waves by Bianisotropic Metasurfaces 

    Lin Li, Kan Yao, Zuojia Wang, and Yongmin Liu

    Laser & Photonics reviews1900244 (2020)

  

Our work was highlighted in MaterialsViews.


4. Metalens-array-based high-dimensional and multi-photon quantum source

    Lin Li*, Zexuan Liu*, Xifeng Ren*, Shuming Wang*, Vin-Cent Su, Mu-Ku Chen, Cheng Hung Chu, Hsin Yu Kuo, Biheng Liu, Wenbo Zang, Guangcan Guo, Lijian Zhang, Zhenlin Wang, Shining Zhu, and Din Ping Tsai

    Science, 368, 1487-1490, (2020) (*contributed equally).

  

Our work was selected in 《Light: Science & Applications》 2020中国光学领域十大社会影响力事件Light10


Our work was selected in “2020中国光学十大进展”2020年度中国光学十大新闻

Our work was highlighted in Nature Photonics.


5. Stable Casimir Equilibria and Quantum Trapping

    R. Zhao*, L. Li*, S. Yang*, W. Bao*, Y. Xia, P. Ashby, Y. Wang, and X. Zhang 

    Science, 364, 984-987 (2019) (*contributed equally)

Our work on quantum trapping was selected in Physics World Top 10 Breakthroughs for 2019


Our work was highlighted in Physics WorldBerkeley News, and Ars Technica.

6. Plasmonic polarization generator in well-routed beaming

    L. Li, T. Li, X. M. Tang, S. M. Wang, Q. J. Wang, S. N. Zhu

    Light: Science & Applications,4, e330 (2015)

Our work was highlighted in Chinese Science Bulletin.

7. Collimated Plasmon Beam: Nondiffracting versus Linearly Focused

    L. Li, T. Li, S. M. Wang, and S. N. Zhu

    Phys. Rev. Lett. 110, 046807 (2013)

8. Plasmonic Airy Beam Generated by In-Plane Diffraction

    L. Li, T. Li, S. M. Wang, C. Zhang, and S. N. Zhu

    Phys. Rev. Lett. 107, 126804 (2011)

     Our work was reported by Nature photonics, News&Views.

9. Broad band focusing and demultiplexing of in-plane propagating surface plasmons

    L. Li, T. Li, S. M. Wang, S. N. Zhu, X. Zhang

    Nano Lett.11, 4357 (2011)

Thesis

Manipulation of Near field Propagation and Far Field Radiation of Surface Plasmon Polariton

L. Li, Springer Thesis, 2017

  


Full publication list:  

35Haozong Zhong, Yong Zheng, Jiacheng Sun, Zhizhang Wang, Rongbo Wu, Ling-en Zhang, Youting Liang, Qinyi Hua, Minghao Ning, Jitao Ji, Bin Fang, Lin Li, Tao Li, Ya Cheng, Shining Zhu, “Gigahertz-rate-switchable wavefront shaping through integration of metasurfaces with photonic integrated circuit”, Adv. Photonics, 6, 016005 (2024)

34Mimi Zhou, Shaojun You, Lei Xu, Menghui Fan, Jing Huang, Wenbin Ma, Mingzhe Hu, Shengyun Luo, Mohsen Rahmani, Ya Cheng, Lin Li, Chaobiao Zhou, Lujun Huang, Andrey E Miroshnichenko, “Bound states in the continuum in all-dielectric metasurfaces with scaled lattice constants”, Science China Physics, Mechanics & Astronomy, 66, 124212 (2023)

33Lujun Huang,Shuangli Li, Chaobiao Zhou, Haozong Zhong, Shaojun You, Lin Li, Ya Cheng, Andrey E Miroshnichenko, “Realizing Ultrahigh-Q Resonances through Harnessing Symmetry-Protected Bound States in the Continuum”, Adv. Funct. Mater., 2309982 (2023).

32Yihao Xu*Lin Li*, Heonyeong Jeong*, Seokwoo Kim, Inki Kim, Junsuk Rho, and Yongmin Liu, “Subwavelength control of light transport at the exceptional point by non-Hermitian metagratings”, Sci. Adv. 9, adf3510 (2023)


31Changwen Wang, Haozong Zhong, Minghao Ning, Bin Fang, Lin Li and Ya Cheng “Broadband Second Harmonic Generation in a z-Cut Lithium Niobate on Insulator Waveguide Based on Type-I Modal Phase Matching”, Photonics 10, 80 (2023)

30Chen Ling, Yaling Yin, Yang Liu, Lin Li, Yong Xia, “Generation of blue-detuned optical storage ring by metasurface and its application in optical trapping of cold molecules”, Chinese Physics B 32 023301 (2023)

29X. Hua, Y. J. Wang, S. M. Wang, X. J. Zou, Y. Zhou, L. Li, F. Yan, X. Cao, S. M. Xiao, D. P. Tsai, J. C. Han, Z. L. Wang and S. N. Zhu, Ultra-compact snapshot spectral light-field imagingNat. Commun. 13, 2732 (2022)

28K. L.Xi, B. Fang, L. Ding, L. Li, S. L. Zhuang, and Q. Q. Cheng, Terahertz Airy beam generated by Pancharatnam-Berry phases in guided wave-driven metasurfacesOpt. Express 30, 16699 (2022)

27Bo Xiong, Yihao Xu, Jianan Wang, Lin Li, Lin Deng, Feng Cheng, Ru‐Wen Peng, Mu Wang, Yongmin Liu, Realizing Colorful Holographic Mimicry by MetasurfacesAdvanced Materials, 33, 2005864 (2021)

26、李军依叶玉儿凌晨李林刘泱夏勇超透镜聚焦光环的产生及其在冷分子光学囚禁中的应用物理学报, 70, 167802 (2021)

25、R. Xie, D. Zhang, X. Wang, S. An, B. Zheng, H. Zhang, G. Zhai, L. Li, J. Ding, “Multi-Channel High-efficiency Metasurfaces Based on Tri-band Single-cell Meta-atoms with Independent Complex-amplitude Modulations”, Advanced Photonics Research, adpr.202100088 (2021).

24、李林、程亚、祝世宁,“浅谈超构表面在量子光学中的应用”,《物理》50, 308 (2021).

23L. Li, K. Yao, Z. J. Wang, and Y. M. Liu, “Harnessing Evanescent Waves by Bianisotropic Metasurfaces” Laser & Photonics reviews, 14, 1900244 (2020).

22F. Cheng, Z. Du, X. Wang, Z. Cai, L. Li, C. Wang, A. Benabbas, P. Champion, N. Sun, L. Pan, Y. Liu, All‐Optical Helicity‐Dependent Switching in Hybrid Metal–Ferromagnet Thin FilmsAdvanced Optical Materials, 2000379 (2020).

21L. Li*, Z. X. Liu*, X. F. Ren*, S. M. Wang*, V. C. Su, M. K. Chen, C. H. Chu, H. Y. Kuo, B. H. Liu, W. B. Zang, G. C. Guo, L. J. Zhang, Z. L. Wang, S. N. Zhu, and D. P. Tsai, “Metalens-array-based high-dimensional and multi-photon quantum source”, Science368, 1487-1490,  (2020).

20R. Zhao*L. Li*, S. Yang*, W. Bao*, Y. Xia, P. Ashby, Y. Wang, and X. Zhang, “Stable Casimir Equilibria and Quantum Trapping”, Science, 364, 984-987 (2019)

19Z. Su, F. Cheng, L. Li, Y. M. Liu, “Complete Control of Smith-Purcell Radiation by Graphene Metasurfaces”, ACS Photonics, 6, 1947-1954, (2019).

18R. C. Jin, J. Q. Li, L. Li, Z. G. Dong, Y. M. Liu, “Dual-mode subwavelength trapping by a plasmonic tweezer based on V-type nanoantennas”, Opt. Lett. 44, 319 (2019)

17Z. Huang, K. Yao, G. X. Su, W. Ma, L. Li, Y. M. Liu, P. Zhan, Z. L. Wang, “Graphene–metal hybrid metamaterials for strong and tunable circular dichroism generation”. Opt. Lett. 43, 2636 (2018)

16H. Su, X. P. Shen, G. X. Su, Lin Li, J. P. Ding, F. X. Liu, P. Zhan, Y. M. Liu, Z. L. Wang, “Efficient Generation of Microwave Plasmonic Vortices via a Single Deep‐Subwavelength Meta‐Particle”, Laser & Photonics reviews, 12, 1800010 (2018).

15S. M. Wang, Q. Q. Cheng, Y. X. Gong, P. Xu, C. Sun, L. Li, T. Li, S. N. Zhu, “A 14 × 14μm2 footprint polarization-encoded quantum controlled-NOT gate based on hybrid waveguideNat. Commun.7, 11490 (2016)

14J. Chen, L. Li, T. Li, S. N. Zhu, “Indefinite Plasmonic Beam Engineering by In-plane Holography”, Sci. Rep. 6, 28926 (2016)

13L. Li, T. Li, X. M. Tang, S. M. Wang, Q. J. Wang, S. N. Zhu, “Plasmonic polarization generator in well-routed beaming”, Light: Science & Applications, 4, e330 (2015)

12Y. L. Wang, T. Li, L. Wang, H. He, L. Li, Q. J. Wang, and S. N. Zhu, “Plasmonic switch based on composite interference in metallic strip waveguides”, Laser & Photonics reviews, 8 (4), L47-L51 (2014).

11Q. Q. Cheng, T. Li, L. Li, S. M. Wang, S. N. Zhu, “Mode division multiplexing in a polymer-loaded plasmonic planar waveguide”, Opt. Lett. 39, 3900 (2014)

10X. M. Tang, L. Li, T. Li, Q. J. Wang, X. J. Zhang, S. N. Zhu, Y. Y. Zhu, “Converting surface plasmon to spatial Airy beam by graded grating on metal surface”. Opt. Lett. 38, 1733 (2013)

9L. Li, T. Li, S. M. Wang, and S. N. Zhu, “Collimated Plasmon Beam: Nondiffracting versus Linearly Focused”, Phys. Rev. Lett. 110, 046807 (2013)

8Q. Q. Cheng, T. Li, R. Y. Guo, L. Li, S. M. Wang, and S. N. Zhu “Direct observation of guided-mode interference in polymer-loaded plasmonic waveguide”. Appl. Phys. Lett. 101, 171116 (2012)

7L. Li, T. Li, S. M. Wang, and S. N. Zhu, “Steering Surface Plasmon Polaritons from Point Source”, Opt. Lett. 37, 5091 (2012)

6L. Wang, T. Li, L. Li, W. Xia, X. G. Xu, and S. N. Zhu “Electrically generated unidirectional surface plasmon source”. Opt. Express 20, 8710 (2012)

5L. Li, T. Li, S. M. Wang, S. N. Zhu, X. Zhang, “Broad band focusing and demultiplexing of in-plane propagating surface plasmons”. Nano Lett.11, 4357 (2011)

4L. Li, T. Li, S. M. Wang, C. Zhang, and S. N. Zhu, “Plasmonic Airy Beam Generated by In-Plane Diffraction”, Phys. Rev. Lett. 107, 126804 (2011)

3F. F. Lu, T. Li, J. Xu, Z. D. Xie, L. Li, S. N. Zhu, and Y. Y. Zhu, “Surface plasmon polariton enhanced by optical parametric amplification in nonlinear hybrid waveguide”, Opt. Express 19, 2858(2011)

2Y. J. Zheng, H. Liu, S. M. Wang, T. Li, J. X. Cao, L. Li, C. Zhu, Y. Wang, S. N. Zhu, X. Zhang, “Selective optical trapping based on strong plasmonic coupling between gold nanorods and slab”, Appl. Phys. Lett. 98, 083117(2011)

1C. Zhu, H. Liu, S. M. Wang, T. Li, J. X. Cao, Y. J. Zheng, L. Li, Y. Wang, S. N. Zhu and X. Zhang” Electric and magnetic excitation of coherent magnetic plasmon waves in a one-dimensional meta-chain”, Opt. Express 18, 26268 (2010)



Honor