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Broadband LWIR generation based on a Yb-doped fiber laser
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作者 XIONG QIN CHENHAO SUN +7 位作者 DAPING LUO XINYIN YANG ZEJIANG DENG GEHUI XIE JINTAO FAN ZHIWEI ZHU CHENGLIN GU WENXUE LI 《Photonics Research》 2025年第11期3067-3072,共6页
Laser spectroscopy in the longwave mid-infrared(LWIR)region reveals the structures and properties of various biochemical substances.Here,we demonstrate a broadband LWIR laser covering 5.7-11.0μm with 13 mW average po... Laser spectroscopy in the longwave mid-infrared(LWIR)region reveals the structures and properties of various biochemical substances.Here,we demonstrate a broadband LWIR laser covering 5.7-11.0μm with 13 mW average power and 108 MHz repetition rate based on difference frequency generation(DFG)in a zinc germanium phosphide(ZGP)crystal.The laser can also be widely tuned over 4.6-11.0μm with a maximum average power of 40 mW.The pump and signal pulses of DFG are generated from a broadband optical parametric oscillator(OPO)system pumped by a Yb-doped fiber laser.Absorption spectroscopy of an organic compound was demonstrated by the LWIR source.Furthermore,combining additional complex phase locking,it has the potential to achieve dual comb spectroscopy(DCS)for higher measurement speed and resolution.The adjustment-free LWIR lasers with instantaneous broadband spectra reduce system complexity and alignment difficulty,and they are desirable for sensitive parallel molecular spectroscopy and biological macromolecule detection. 展开更多
关键词 biochemical substancesherewe zinc germanium phosphide broadband optical parametric oscill optical parametric oscillator laser spectroscopy broadband lwir laser difference frequency generation dfg difference frequency generation
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