most citedPartial parabolic amplification in rare-earth-doped optical fiber

1 citations · 1 across the 2 of their papers we have counts for

collaborators

5 papers

physics.optics2026

Analysis and control of Raman phonon dynamics for enhanced optical frequency conversion

Yi-Hao Chen, Frank Wise

Raman phonons are quantized molecular motions that arise from the inelastic scattering of light and mediate a wide range of spectroscopic and nonlinear optical phenomena. These can…

physics.optics20261 cited

Partial parabolic amplification in rare-earth-doped optical fiber

Wenchao Wang, Yi-Hao Chen, Frank Wise

Nonlinear amplification is a powerful technique for generating ultrashort laser pulses with high peak power in fiber systems. However, the diversity of nonlinear amplification appr…

physics.optics2026

Highly-efficient perturbative Raman shifting by engineering the nonlinear temporal response

Yi-Hao Chen, Wenchao Wang, Jose Enrique Antonio-Lopez +3

Raman scattering underlies a broad range of spectroscopic and light-generation techniques, yet its conventional description, based on the Raman gain spectrum, accurately describes…

physics.optics2026

Raman-enhanced spectral compression of high-energy femtosecond laser pulses in molecular gases

Zegui Wang, Yi-Hao Chen, Yunlong Mo +4

Nonlinear pulse propagation in gas-filled waveguides has attracted substantial attention over the past decade, and a variety of capabilities have been reported. However, there is n…

physics.optics2025

A simple accurate way to model noise-seeded ultrafast nonlinear processes

Yi-Hao Chen, Frank Wise

Noise can play an important role in nonlinear pulse propagation. It is not only the origin of fluctuations in supercontinuum but can also determine the generated signal amplitude a…