Wan Yingchao, Shen Yanlong, Wang Ke, Chai Tongxing, Wang Yousheng, Chen Zhengge, Zhu Feng
State Key Laboratory of Laser Interaction with Matter, Northwest Institute of Nuclear Technology, Xi'an 710024, China.
Micromachines (Basel). 2023 Nov 30;14(12):2194. doi: 10.3390/mi14122194.
Iron-doped binary chalcogenide crystals are very promising for tunable solid-state lasers operating over the 3~5 μm spectral range. Fe: ZnSe is one of the most important gain crystals with the obvious advantages of material characteristics and conversion efficiency. By adjusting the output mode of the pump source, an Fe: ZnSe laser can operate in two modes at liquid nitrogen temperatures: continuous wave (CW) and pulse output. In terms of CW output, the Fe: ZnSe laser obtained a maximum 2.63 W continuous power output which was confined to the power of the pump source. An optical-to-optical efficiency of 47.05% was acquired. Direct electrical modulation was applied to the pump source. The highest average power of the quasi-CW laser, whose central wavelength is 4.02 μm, has a value of 253 mW with an optical-to-optical efficiency of 42.88% and a full width at half maximum (FWHM) of 23 nm when the pulse frequency is 100 Hz of 10% duty factor. The output waveform is consistent with the modulation waveform applied to the pump source. We report to the first of our knowledge an electrically modulated quasi-CW Fe: ZnSe laser in the pulse regime, equipped with features of compactness in structure, ignoring additional modulators, convenience in control, high efficiency, and sustainable operation, of great interest for solving numerous scientific and applied problems.
铁掺杂二元硫族化物晶体对于工作在3~5μm光谱范围内的可调谐固态激光器非常有前景。Fe:ZnSe是最重要的增益晶体之一,具有材料特性和转换效率方面的明显优势。通过调整泵浦源的输出模式,Fe:ZnSe激光器在液氮温度下可在两种模式下工作:连续波(CW)和脉冲输出。就连续波输出而言,Fe:ZnSe激光器获得了最大2.63W的连续功率输出,该输出受限于泵浦源的功率。获得了47.05%的光光效率。对泵浦源施加了直接电调制。当脉冲频率为100Hz、占空比为10%时,中心波长为4.02μm的准连续波激光器的最高平均功率为253mW,光光效率为42.88%,半高全宽(FWHM)为23nm。输出波形与施加到泵浦源的调制波形一致。据我们所知,我们首次报道了一种脉冲状态下电调制的准连续波Fe:ZnSe激光器,其具有结构紧凑、无需额外调制器、控制方便、效率高和可持续运行等特点,对于解决众多科学和应用问题具有重要意义。