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Hanlin Fang
Hanlin Fang
Technical University of Denmark
Verified email at mail2.sysu.edu.cn
Title
Cited by
Cited by
Year
Efficient silicon metasurfaces for visible light
Z Zhou, J Li, R Su, B Yao, H Fang, K Li, L Zhou, J Liu, D Stellinga, ...
Acs Photonics 4 (3), 544-551, 2017
2532017
Room temperature nanocavity laser with interlayer excitons in 2D heterostructures
Y Liu, H Fang, A Rasmita, Y Zhou, J Li, T Yu, Q Xiong, N Zheludev, J Liu, ...
Science Advances 5 (4), eaav4506, 2019
1512019
Tailoring of electromagnetic field localizations by two-dimensional graphene nanostructures
ZB Zheng, JT Li, T Ma, HL Fang, WC Ren, J Chen, JC She, Y Zhang, F Liu, ...
Light: Science & Applications 6 (10), e17057-e17057, 2017
632017
Second harmonic and sum-frequency generations from a silicon metasurface integrated with a two-dimensional material
Q Yuan, L Fang, H Fang, J Li, T Wang, W Jie, J Zhao, X Gan
ACS Photonics 6 (9), 2252-2259, 2019
582019
Robust room temperature valley Hall effect of interlayer excitons
Z Huang, Y Liu, K Dini, Q Tan, Z Liu, H Fang, J Liu, T Liew, W Gao
Nano letters 20 (2), 1345-1351, 2019
572019
1305 nm Few‐Layer MoTe2‐on‐Silicon Laser‐Like Emission
H Fang, J Liu, H Li, L Zhou, L Liu, J Li, X Wang, TF Krauss, Y Wang
Laser & Photonics Reviews 12 (6), 1800015, 2018
542018
Fano resonance lineshapes in a waveguide-microring structure enabled by an air-hole
L Gu, L Fang, H Fang, J Li, J Zheng, J Zhao, Q Zhao, X Gan
APL photonics 5 (1), 2020
472020
A compact structure for realizing Lorentzian, Fano, and electromagnetically induced transparency resonance lineshapes in a microring resonator
L Gu, H Fang, J Li, L Fang, SJ Chua, J Zhao, X Gan
Nanophotonics 8 (5), 841-848, 2019
472019
Paths to light trapping in thin film GaAs solar cells
J Xiao, H Fang, R Su, K Li, J Song, TF Krauss, J Li, ER Martins
Optics Express 26 (6), A341-A351, 2018
372018
Multiple Optical Frequency Conversions in Few‐Layer GaSe Assisted by a Photonic Crystal Cavity
L Fang, Q Yuan, H Fang, X Gan, J Li, T Wang, Q Zhao, W Jie, J Zhao
Advanced Optical Materials 6 (22), 1800698, 2018
212018
Laser‐Like Emission from a Sandwiched MoTe2 Heterostructure on a Silicon Single‐Mode Resonator
H Fang, J Liu, Q Lin, R Su, Y Wei, TF Krauss, J Li, Y Wang, X Wang
Advanced Optical Materials 7 (20), 1900538, 2019
192019
A room-temperature moir\'e interlayer exciton laser
Q Lin, H Fang, Y Liu, Y Zhang, M Fischer, J Li, J Hagel, S Brem, E Malic, ...
arXiv preprint arXiv:2302.01266, 2023
82023
Valley-exchange coupling probed by angle-resolved photoluminescence
JJP Thompson, S Brem, H Fang, C Antón-Solanas, B Han, H Shan, ...
Nanoscale Horizons 7 (1), 77-84, 2022
72022
Criteria for deterministic single-photon emission in two-dimensional atomic crystals
JJP Thompson, S Brem, H Fang, J Frey, SP Dash, W Wieczorek, E Malic
Physical Review Materials 4 (8), 084006, 2020
62020
Infrared semiconducting transition-metal dichalcogenide lasing with a silicon nanocavity
H Li, H Fang, J Xiao, J Li, Y Wang
Journal of the Korean Physical Society 73, 278-282, 2018
42018
1305 nm MoTe2-on-silicon Laser
H Fang, J Liu, H Li, L Zhou, L Liu, J Li, X Wang, TF Krauss, Y Wang
arXiv preprint arXiv:1710.01591, 2017
32017
Localization and interaction of interlayer excitons in MoSe2/WSe2 heterobilayers
H Fang, Q Lin, Y Zhang, J Thompson, S Xiao, Z Sun, E Malic, SP Dash, ...
Nature communications 14 (1), 6910, 2023
22023
Nanowire-assisted microcavity in a photonic crystal waveguide and the enabled high-efficiency optical frequency conversions
L Gu, L Fang, Q Yuan, X Gan, H Yang, X Zhang, J Li, H Fang, ...
Photonics Research 8 (11), 1734-1741, 2020
22020
Optically Active Telecom Defects in MoTe2 Fewlayers at Room Temperature
Y Lei, Q Lin, S Xiao, J Li, H Fang
Nanomaterials 13 (9), 1501, 2023
12023
Room temperature interlayer exciton valley polarization and valley Hall effect
Z Huang, Y Liu, K Dini, Z Liu, H Fang, J Liu, T Liew, W Gao
arXiv preprint arXiv:1904.09718, 2019
12019
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