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Theoretical and experimental investigations on measuring underwater temperature by the coherent Brillouin scattering method

机译:相干布里渊散射法测量水下温度的理论和实验研究

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摘要

In this paper, a new method of measuring a water-stimulated Brillouin scattering (SBS) frequency shift by optical coherent detection is presented, in order to remote-sense the underwater temperature of the ocean. A single longitudinal mode, passively Q-switched pulsed Nd:YAG laser is used as the light source, the water SBS beam is used as the signal beam, and a portion of the incident laser beam is used as the local oscillator. The heterodyne is detected by a high-speed photodetector, and the heterodyne frequency is the Brillouin frequency shift. Therefore, the underwater temperature can be determined according to the relationship between the Brillouin frequency shift and the water temperature. To test and verify its practicability, the heterodyne waveforms at different water temperatures are recorded in the laboratory with a wide-band oscilloscope, and the Brillouin frequency shifts are deduced by a Fourier transform. The experimental results are consistent with the theoretical analysis. This work provides the foundation for the development of a water temperature measurement system based on coherent Brillouin scattering. (C) 2015 Optical Society of America
机译:本文提出了一种通过光学相干检测来测量水刺激布里渊散射(SBS)频移的新方法,以远程感知海洋的水下温度。单纵模被动调Q脉冲Nd:YAG脉冲激光用作光源,水SBS光束用作信号光束,入射激光束的一部分用作本地振荡器。外差由高速光电检测器检测,外差频率是布里渊频移。因此,可以根据布里渊频移与水温之间的关系来确定水下温度。为了测试和验证其实用性,使用宽带示波器在实验室中记录了不同水温下的外差波形,并通过傅立叶变换推导了布里渊频移。实验结果与理论分析相吻合。这项工作为开发基于相干布里渊散射的水温测量系统提供了基础。 (C)2015年美国眼镜学会

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