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Ju Han Lee
Ju Han Lee
School of Electrical and Computer Engineering, University of Seoul
Bestätigte E-Mail-Adresse bei ieee.org
Titel
Zitiert von
Zitiert von
Jahr
Metallic MXene saturable absorber for femtosecond mode‐locked lasers
YI Jhon, J Koo, B Anasori, M Seo, JH Lee, Y Gogotsi, YM Jhon
Advanced Materials 29 (40), 1702496, 2017
5992017
A femtosecond pulse fiber laser at 1935 nm using a bulk-structured Bi2Te3 topological insulator
M Jung, J Lee, J Koo, J Park, YW Song, K Lee, S Lee, JH Lee
Optics express 22 (7), 7865-7874, 2014
2982014
A femtosecond pulse erbium fiber laser incorporating a saturable absorber based on bulk-structured Bi2Te3 topological insulator
J Lee, J Koo, YM Jhon, JH Lee
Optics express 22 (5), 6165-6173, 2014
2792014
Near‐Infrared Saturable Absorption of Defective Bulk‐Structured WTe2 for Femtosecond Laser Mode‐Locking
J Koo, YI Jhon, J Park, J Lee, YM Jhon, JH Lee
Advanced Functional Materials 26 (41), 7454-7461, 2016
2022016
Mode-locked, 1.94-μm, all-fiberized laser using WS2-based evanescent field interaction
M Jung, J Lee, J Park, J Koo, YM Jhon, JH Lee
Optics express 23 (15), 19996-20006, 2015
1872015
A Q-switched, mode-locked fiber laser using a graphene oxide-based polarization sensitive saturable absorber
J Lee, J Koo, P Debnath, YW Song, JH Lee
Laser Physics Letters 10 (3), 035103, 2013
1642013
Femtosecond harmonic mode-locking of a fiber laser at 3.27 GHz using a bulk-like, MoSe2-based saturable absorber
J Koo, J Park, J Lee, YM Jhon, JH Lee
Optics Express 24 (10), 10575-10589, 2016
1402016
Mode-locked pulse generation from an all-fiberized, Tm-Ho-codoped fiber laser incorporating a graphene oxide-deposited side-polished fiber
M Jung, J Koo, J Park, YW Song, YM Jhon, K Lee, S Lee, JH Lee
Optics express 21 (17), 20062-20072, 2013
1202013
Passively Q-Switched 1.89-μm Fiber Laser Using a Bulk-Structured Bi2Te3 Topological Insulator
J Lee, M Jung, J Koo, C Chi, JH Lee
IEEE Journal of Selected Topics in Quantum Electronics 21 (1), 31-36, 2014
1082014
van der Waals layered tin selenide as highly nonlinear ultrafast saturable absorber
YI Jhon, J Lee, M Seo, JH Lee, YM Jhon
Advanced Optical Materials 7 (10), 1801745, 2019
922019
All-fiberized, femtosecond laser at 1912 nm using a bulk-like MoSe2 saturable absorber
J Lee, J Koo, J Lee, YM Jhon, JH Lee
Optical Materials Express 7 (8), 2968-2979, 2017
842017
A mode-locked 1.91 µm fiber laser based on interaction between graphene oxide and evanescent field
M Jung, J Koo, P Debnath, YW Song, JH Lee
Applied Physics Express 5 (11), 112702, 2012
842012
An all fiberized, 1.89-μm Q-switched laser employing carbon nanotube evanescent field interaction
M Jung, J Koo, YM Chang, P Debnath, YW Song, JH Lee
Laser Physics Letters 9 (9), 669, 2012
822012
All-fiberized, passively Q-switched 1.06 μm laser using a bulk-structured Bi2Te3 topological insulator
J Lee, J Koo, C Chi, JH Lee
Journal of Optics 16 (8), 085203, 2014
732014
All-normal-dispersion dissipative-soliton fiber laser at 1.06 µm using a bulk-structured Bi2Te3 topological insulator-deposited side-polished fiber
C Chi, J Lee, J Koo, JH Lee
Laser Physics 24 (10), 105106, 2014
712014
Harmonically mode-locked femtosecond fiber laser using non-uniform, WS2-particle deposited side-polished fiber
J Lee, J Park, J Koo, YM Jhon, JH Lee
Journal of Optics 18 (3), 035502, 2016
672016
Topological insulators for mode-locking of 2-μm fiber lasers
YI Jhon, J Lee, YM Jhon, JH Lee
IEEE Journal of Selected Topics in Quantum Electronics 24 (5), 1-8, 2018
632018
Chemical wet etching of an optical fiber using a hydrogen fluoride-free solution for a saturable absorber based on the evanescent field interaction
S Ko, J Lee, J Koo, BS Joo, M Gu, JH Lee
Journal of Lightwave Technology 34 (16), 3776-3784, 2016
572016
Ultrafast mode-locking in highly stacked Ti3C2Tx MXenes for 1.9-μm infrared femtosecond pulsed lasers
YI Jhon, J Lee, YM Jhon, JH Lee
Nanophotonics 10 (6), 1741-1751, 2021
562021
Femtosecond harmonic mode-locking of a fiber laser based on a bulk-structured Bi2Te3 topological insulator
J Lee, J Koo, YM Jhon, JH Lee
Optics express 23 (5), 6359-6369, 2015
512015
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