High average power (105 W) Fe:ZnSe laser pumped by radiation of laser diode side-pumped Er:YAG lasers

A high average power re-frequency operation Fe:ZnSe laser using laser diode side-pumped free-running Er:YAG lasers as activating sources is presented. Two pieces of subsurface layer doped Fe:ZnSe polycrystal are adoptive in a reflective resonator configuration and face-cooled by liquid nitrogen. A m...

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Veröffentlicht in:Optics letters 2024-06, Vol.49 (12), p.3476
Hauptverfasser: Wu, Yingchen, Zhou, Rui, Zhou, Sikun, Ren, Huaijin, Zhang, Song, Wei, Xingbin, Shang, Jianli, Wang, Weimin, Leng, Mingyang, Dai, Wenlin, Yi, Jiayu, Tang, Chun, Chen, Lei
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Sprache:eng
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Zusammenfassung:A high average power re-frequency operation Fe:ZnSe laser using laser diode side-pumped free-running Er:YAG lasers as activating sources is presented. Two pieces of subsurface layer doped Fe:ZnSe polycrystal are adoptive in a reflective resonator configuration and face-cooled by liquid nitrogen. A maximal Fe:ZnSe laser power of 105 W at a wavelength of 4.1 μm is achieved upon pumping by ten home-made Er:YAG lasers with fiber coupled output working at a frequency of 250 Hz and a pulse duration of ∼420 μs. Corresponding to the maximum Fe:ZnSe laser power, the optical-optical efficiency and slope efficiency with respect to the absorbed pump power are 43% and 44% respectively. The beam quality factor M is measured to be 3.4. To the best of our knowledge, it is the highest output average power of an Fe:ZnSe laser reported.
ISSN:0146-9592
1539-4794
1539-4794
DOI:10.1364/OL.525052