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His previous work includes high power fiber lasers and amplifiers, frequency conversion of high power lasers, and their applications in material processing and biophotonics. He has developed a variety of high power fiber lasers during the past 15 years with wavelengths over 500–1600 nm. He proposed and modeled a fiber disk laser which led to the demonstration of world's first kW fiber laser without requiring high brightness pump laser diodes. He used a quasi-CW fiber amplifier to achieve narrow-linewidth without the onset of SBS and demonstrated 60 W green output based on second harmonic generation of the high power fiber amplifier. His recent work on modeling of SBS has resulted in a 500 W single-frequency amplifier. He successfully demonstrated a phase-locked fiber laser using a multi-core double-clad fiber and achieved great beam quality. His two-grating configuration for spectral beam combining of high power fiber lasers has achieved hundreds of watts output with diffraction limited beam quality. He has also developed a compact and highly efficient eye-safe fiber laser for defense applications. He has authored more than 50 papers in top scientific journals and leading international conferences.
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High-Power Laser Materials Processing: Applications, Diagnostics, and Systems X (2021): 53-62
Frontiers in Optics + Laser Science 2021 (2021)
The Optics Encyclopediapp.1-38, (2017)
NONLINEAR FREQUENCY GENERATION AND CONVERSION: MATERIALS, DEVICES, AND APPLICATIONS XIV (2015)
mag(2015)
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mag(2015)
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