用腔内甲烷电池在77 ~ 300 K温度范围内测试Cr:ZnSe激光器

M. Tarabrin, M. Frolov, M. Gubin, A. Kireev, Y. Korostelin, V. Kozlovsky, V. Lazarev, A. Pniov, Y. Podmar’kov, D. Shelestov, A. Shelkovnikov, D. Tyurikov
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引用次数: 3

摘要

研制了一种腔内甲烷低温电池的中红外连续波可调谐固态双模Cr2+:ZnSe激光器。利用激光对甲烷(1+ 4)振动旋转带进行了亚多普勒谱分析,并在λ = 2.36 μm处观察了饱和色散的窄共振。采用低压甲烷气体冷却新技术,取代了我们以往工作中采用的液氮“夹套”设计。在77 ~ 300 K温度范围内估计了饱和色散共振的参数。实验证实,采用新型“干冷”甲烷电池的激光器有可能达到10-15-0-16的短期频率稳定水平,并且可以作为小型设备使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Testing of Cr:ZnSe laser with intracavity methane cell in 77–300 K temperature range
The mid-IR cw tunable solid state two-mode Cr2+:ZnSe laser with intracavity methane cryocell was developed. The laser was applied for sub-Doppler spectroscopy of (υ1+υ4) vibrational-rotational band of methane and observation of narrow resonances of saturated dispersion at λ = 2.36 μm. The new technique of low pressure methane gas cooling was used instead of liquid nitrogen “jacket” design applied in our previous work. Parameters of saturated dispersion resonances were estimated in 77-300 K temperature range. The experiments confirmed that laser with the new “dry cooled” methane cell has prospectives for reaching a short-term frequency stability at the level of 10-15-0-16 and can be used as a compact device.
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