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Qitian RU
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Optical parametric oscillation in a random polycrystalline medium
Q Ru, N Lee, X Chen, K Zhong, G Tsoy, M Mirov, S Vasilyev, SB Mirov, ...
Optica 4 (6), 617-618, 2017
612017
High-power Yb-fiber comb with feed-forward control of nonlinear-polarization-rotation mode-locking and large-mode-area fiber amplification
M Yan, W Li, K Yang, H Zhou, X Shen, Q Zhou, Q Ru, D Bai, H Zeng
Optics Letters 37 (9), 1511-1513, 2012
442012
Mid-wave infrared beam steering based on high-efficiency liquid crystal diffractive waveplates
F Gou, F Peng, Q Ru, YH Lee, H Chen, Z He, T Zhan, KL Vodopyanov, ...
Optics express 25 (19), 22404-22410, 2017
372017
Self-referenced octave-wide subharmonic GaP optical parametric oscillator centered at 3 μm and pumped by an Er-fiber laser
Q Ru, ZE Loparo, XS Zhang, S Crystal, S Vasu, PG Schunemann, ...
Optics letters 42 (22), 4756-4759, 2017
362017
Half-Watt average power femtosecond source spanning 3–8 µm based on subharmonic generation in GaAs
V Smolski, S Vasilyev, I Moskalev, M Mirov, Q Ru, A Muraviev, ...
Applied Physics B 124 (6), 101, 2018
352018
Broadband mid-infrared optical parametric oscillator for dynamic high-temperature multi-species measurements in reacting systems
ZE Loparo, E Ninnemann, Q Ru, KL Vodopyanov, SS Vasu
Optics Letters 45 (2), 491-494, 2020
322020
Two-octave-wide (3–12 µm) subharmonic produced in a minimally dispersive optical parametric oscillator cavity
Q Ru, T Kawamori, PG Schunemann, S Vasilyev, SB Mirov, ...
Optics Letters 46 (4), 709-712, 2021
312021
Background-free broadband absorption spectroscopy based on interferometric suppression with a sign-inverted waveform
T Tomberg, A Muraviev, Q Ru, KL Vodopyanov
Optica 6 (2), 147-151, 2019
272019
Comprehensive Model for Randomly Phase-Matched Frequency Conversion in Zinc-Blende Polycrystals and Experimental Results for
T Kawamori, Q Ru, KL Vodopyanov
Physical Review Applied 11 (5), 054015, 2019
232019
Harmonic mode locking with reduced carrier-envelope phase noise in ytterbium-doped fiber laser
M Yan, W Li, K Yang, D Bai, J Zhao, X Shen, Q Ru, H Zeng
Optics letters 37 (15), 3021-3023, 2012
152012
Optical parametric oscillation in a random poly-crystalline medium: ZnSe ceramic
Q Ru, T Kawamori, N Lee, X Chen, K Zhong, M Mirov, S Vasilyev, ...
Nonlinear Frequency Generation and Conversion: Materials and Devices XVII …, 2018
112018
Instantaneous spectral span of 2.85-8.40 µm achieved in a Cr: ZnS laser pumped subharmonic OPO
Q Ru, K Zhong, NP Lee, ZE Loparo, PG Schunemann, S Vasilyev, ...
Nonlinear Frequency Generation and Conversion: Materials and Devices XVI …, 2017
102017
Mid-infrared diffraction-free space-time wave packets
M Yessenov, Q Ru, KL Schepler, M Meem, R Menon, KL Vodopyanov, ...
OSA Continuum 3 (3), 420-429, 2020
92020
Femtosecond OPO based on orientation-patterned gallium phosphide (OP-GaP)
QT Ru, ZE Loparo, PG Schunemann, KL Vodopyanov
CLEO: Science and Innovations, STu1Q. 6, 2016
92016
Two-octave-wide (3-12 {\mu} m) mid-infrared frequency comb produced as an optical subharmonic in a nondispersive cavity
Q Ru, T Kawamori, PG Schunemann, S Vasilyev, SB Mirov, ...
arXiv preprint arXiv:2007.02496, 2020
62020
Parallel fiber amplifiers with carrier–envelope drift control for coherent combination of optical frequency combs
K Yang, W Li, X Shen, J Zhao, D Bai, Q Ru, H Zeng
Laser Physics 24 (12), 125101, 2014
42014
A 2.35-µm pumped subharmonic OPO reaches the spectral width of two octaves in the mid-IR
Q Ru, PG Schunemann, S Vasilyev, SB Mirov, KL Vodopyanov
CLEO: Science and Innovations, SF1H. 1, 2019
32019
Instantaneous Spectral Span of 2.85-8.40 μm Achieved in a Cr: ZnS Laser Pumped Subharmonic GaAs OPO
Q Ru, K Zhong, NP Lee, ZE Loparo, PG Schunemann, S Vasilyev, ...
CLEO: Science and Innovations, SM4M. 3, 2017
32017
Phase noise suppression for a high-power optical frequency comb
J Zhao, W Li, D Bai, K Yang, Q Ru, Y Liu, L Li, H Zeng
Laser Physics 23 (9), 095112, 2013
32013
Broadband randomly phase matched OPO using a thin 0.5-mm ZnSe ceramic and a dispersion-free cavity
Q Ru, T Kawamori, S Vasilyev, SB Mirov, KL Vodopyanov
CLEO: Science and Innovations, STh3J. 6, 2019
12019
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