Abstract
A brightness- and power-scalable polarization beam-combining scheme for high-power, broad-area semiconductor laser diodes is investigated numerically and experimentally. To achieve the beam combining, we employ Lyot-filtered optical reinjection from an external cavity, which forces lasing of the individual diodes on interleaved frequency combs with overlapping envelopes and enables a high optical coupling efficiency. Unlike conventional spectral beam-combining schemes with diffraction gratings, the optical coupling efficiency is insensitive to thermal drifts of laser wavelengths. This scheme can be used for efficient coupling of a large number of laser diodes and paves the way toward using broad-area laser diode arrays for cost-efficient material processing, which requires high-brilliance emission and optical powers in the kW regime.
© 2019 Optical Society of America
Full Article | PDF ArticleMore Like This
Shyam K. Mandre, Ingo Fischer, and Wolfgang Elssser
Opt. Lett. 28(13) 1135-1137 (2003)
B. Liu, Y. Liu, and Y. Braiman
Opt. Express 18(7) 7361-7368 (2010)
Yufei Zhao, Fangyuan Sun, Cunzhu Tong, Shili Shu, Guanyu Hou, Huanyu Lu, Xin Zhang, Lijie Wang, Sicong Tian, and Lijun Wang
Opt. Express 26(11) 14058-14065 (2018)