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Remote Water Temperature Measurements Based on Brillouin Scattering with a Frequency Doubled Pulsed Yb:doped Fiber Amplifier

机译:基于双频脉冲掺Yb:光纤放大器的布里渊散射的远程水温测量

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摘要

Temperature profiles of the ocean are of interest for weather forecasts, climate studies and oceanography in general. Currently, mostly in situ techniques such as fixed buoys or bathythermographs deliver oceanic temperature profiles. A LIDAR method based on Brillouin scattering is an attractive alternative for remote sensing of such water temperature profiles. It makes it possible to deliver cost-effective on-line data covering an extended region of the ocean. The temperature measurement is based on spontaneous Brillouin scattering in water. In this contribution, we present the first water temperature measurements using a Yb:doped pulsed fiber amplifier. The fiber amplifier is a custom designed device which can be operated in a vibrational environment while emitting narrow bandwidth laser pulses. The device shows promising performance and demonstrates the feasibility of this approach. Furthermore, the current status of the receiver is briefly discussed; it is based on an excited state Faraday anomalous dispersion optical filter.
机译:总体而言,海洋的温度剖面对于天气预报,气候研究和海洋学很有用。当前,大多数现场技术(例如固定浮标或体温计)可提供海洋温度曲线。基于布里渊散射的LIDAR方法是遥感此类水温曲线的一种有吸引力的替代方法。这样就可以提供覆盖海洋扩展区域的具有成本效益的在线数据。温度测量基于水中的自发布里渊散射。在此贡献中,我们介绍了使用Yb:掺杂脉冲光纤放大器进行的首次水温测量。光纤放大器是一种定制设计的设备,可以在振动环境中运行,同时发出窄带宽的激光脉冲。该设备显示出令人鼓舞的性能,并证明了这种方法的可行性。此外,简要讨论了接收器的当前状态。它基于激发态法拉第反常色散光学滤波器。

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