2.09â
µm high-gain, high-energy sub-nanosecond laser amplification system and its application to a millijoule-level mid-infrared ZnGeP2 optical parametric generator.
Opt Lett
; 49(15): 4290-4293, 2024 Aug 01.
Article
em En
| MEDLINE
| ID: mdl-39090916
ABSTRACT
In this Letter, we report for the first time to our knowledge a 2â
mJ-level 2.09â
µm HoYAG regenerative amplifier (RA) seeded by the first-stage Ho-doped fiber (HDF) preamplifier of a gain-switched laser diode (GSLD). After the single-pass power amplifier (SPPA), the output of a 2.09â
µm pulse laser with 1â
kHz, 570â
ps, and >10â
mJ was achieved. The overall gain of the whole amplifier system was greater than 90â
dB, providing a novel, stable, and reliable sub-nanosecond (sub-ns) pump source operating at a pulse repetition frequency (PRF) of 1â
kHz for an optical parametric generator (OPG) based on ZnGeP2 (ZGP). Specifically, for the ZGP OPG structure, a maximum pulse energy of 1.82â
mJ at 3-5â
µm had been achieved with an injected pump pulse energy of 5.47â
mJ, corresponding to a slope efficiency of 39.5% and an optical-to-optical conversion efficiency (OOCE) of 33.27%.
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MEDLINE
Idioma:
En
Ano de publicação:
2024
Tipo de documento:
Article