Kin-Man Tsia, Ph.D.
Affiliations: | 2009 | University of California, Los Angeles, Los Angeles, CA |
Area:
Silicon photonics and fiber optic communication, real-time streaming data acquisition and processing, biophotonics, rare cell detection, blood screening, nondestructive material testing and characterization, rogue wave phenomenaGoogle:
"Kin-Man Tsia"Parents
Sign in to add mentorBahram Jalali | grad student | 2009 | UCLA | |
(New trends in photonics: From green photonics to biophotonics.) |
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Publications
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Tan S, Wei X, Li B, et al. (2018) Ultrafast optical imaging at 2.0 μm through second-harmonic-generation-based time-stretch at 1.0 μm. Optics Letters. 43: 3822-3825 |
Kong C, Wei X, Kang J, et al. (2018) Ultra-broadband spatiotemporal sweeping device for high-speed optical imaging. Optics Letters. 43: 3546-3549 |
Tan S, Wei X, Wu J, et al. (2018) Flexible pulse-stretching for a swept source at 2.0 μm using free-space angular-chirp-enhanced delay. Optics Letters. 43: 102-105 |
Wei X, Tan S, Mussot A, et al. (2015) 110 nm versatile fiber optical parametric amplifier at 1.0 μm Optics Letters. 40: 4090-4093 |
Lau AKS, Tang AHL, Chung BMF, et al. (2015) High-throughput image-based single-cell analysis by ultrafast asymmetric-detection time-stretch optical microscopy Bio-Optics: Design and Application, Boda 2015 |
Xu J, Wei X, Yu L, et al. (2015) High-quality amplified optical time-stretch optical coherence tomography beyond 10MHz Bio-Optics: Design and Application, Boda 2015 |
Chan ACS, Lam EY, Tsia KK. (2015) Pixel super-resolution in optical time-stretch microscopy using acousto-optic deflector Bio-Optics: Design and Application, Boda 2015 |
Wei X, Lau AK, Xu Y, et al. (2014) Broadband fiber-optical parametric amplification for ultrafast time-stretch imaging at 1.0 μm. Optics Letters. 39: 5989-92 |
Xu J, Wei X, Yu L, et al. (2014) Performance of megahertz amplified optical time-stretch optical coherence tomography (AOT-OCT). Optics Express. 22: 22498-512 |
Xu J, Zhang C, Xu J, et al. (2014) Megahertz all-optical swept-source optical coherence tomography based on broadband amplified optical time-stretch. Optics Letters. 39: 622-5 |