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Optical heterodyning in differential tunable CO2 laser systems

机译:差分可调CO2激光系统中的光学异差

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Long-wave infrared (LWIR) differential laser systems based on single-frequency pulsed CO2 lasers are used in heterodyne lidars for detection of atmospheric pollutions at extremely far distances. Issues related to control of the two-channel tunable single-frequency CO2 laser system, which includes two pulsed TEA laser and four CW wave-guide CO2 lasers (two injectors and two local oscillators) are discussed. The special hardware and software -Automatic Frequency Control system (AFC) - have been developed for the effective operation in wide spectral range (>60 lines of CO2 laser). The main task of this system is to keep optimal ratio between a frequency of the injection laser generation and modes of the TEA laser's resonator. The optimal ratio provides maximal probability of the single-frequency pulse generation taking the TEA chirp into account. Experimental data presented on the temporal and spectral structure of the TEA laser pulse generated with injection of the single-frequency CW radiation.
机译:基于单频脉冲CO2激光器的长波红外(LWIR)差动激光系统用于外差延迟线,用于检测远距离的大气污染。讨论了与控制有关两个脉冲茶激光和四个CW波导CO2激光器(两个喷射器和两个本地振荡器)的双通道可调单频CO2激光系统相关的问题。特殊的硬件和软件 - 自动频率控制系统(AFC) - 已开发用于宽频谱范围(> 60线CO2激光器)的有效操作。该系统的主要任务是保持注射激光生成频率与茶激光谐振器模式之间的最佳比率。最佳比率提供了将茶叶啁啾的单频脉冲产生的最大概率。用注射单频CW辐射产生的茶激光脉冲的时间和光谱结构的实验数据。

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