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A Brillouin lidar for remote sensing of the temperature profile in the ocean: Towards the laboratory demonstration

机译:布里渊激光雷达,用于遥感海洋中的温度曲线:走向实验室演示

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The oceans cover more than 70% of the Earth''s surface and have a large influence on the world''s climate. The knowledge of their water temperature profile is a key to a deeper understanding of the climate system as it can provide valuable input to climate studies, weather forecast and physical oceanography. Concerning the upper-ocean mixed layer, a remote sensing lidar technique is a promising approach due to its flexibility and low cost. Based on the detection of spontaneous Brillouin scattering, we are currently developing such a rugged system for operation from a mobile platform. It consists of a pulsed laser system to generate spontaneously Brillouin scattered light and a detector to deduce the temperature from a frequency analysis of the backscattered light. The light source is a pulsed, three stage Yb-doped fiber amplifier with subsequent frequency doubling. Using this laser system we performed first range resolved temperature measurements in our laboratory setup. The setup involved a slow scanning Fabry-Pérot interferometer as a detector, which is not capable of real-time measurements. Switching to an edge filter based on an Excited State Faraday Anomalous Dispersion Optical Filter (ESFADOF) will provide this capability. So far, the amplifier generates laser pulses with an energy of up to 131µJ at 532nm. We currently switch its operating wavelength to render it compatible with the ESFADOF, providing the desired steep transmission edges with very low fluctuations. We are on the verge of demonstrating first temperature measurements with the ESFADOF under laboratory conditions.
机译:海洋覆盖了地球表面的70%以上,对世界的气候影响很大。他们对水温曲线的了解是加深对气候系统了解的关键,因为它可以为气候研究,天气预报和自然海洋学提供有价值的输入。关于上层海洋混合层,由于其灵活性和低成本,遥感激光雷达技术是一种很有前途的方法。基于对自发布里渊散射的检测,我们目前正在开发一种坚固的系统,可从移动平台进行操作。它由一个脉冲激光系统和一个检测器组成,该脉冲激光系统可自发产生布里渊散射光,该检测器可通过对反向散射光的频率分析来推断温度。光源是脉冲的,掺Yb的三级光纤放大器,其频率随后加倍。使用此激光系统,我们在实验室设置中执行了第一范围分辨的温度测量。该设置包括一个慢扫描法布里-珀罗干涉仪作为检测器,它不能进行实时测量。切换到基于激发态法拉第反常色散光学滤波器(ESFADOF)的边缘滤波器将提供此功能。到目前为止,该放大器在532nm处产生的激光脉冲能量高达131µJ。我们目前正在切换其工作波长,以使其与ESFADOF兼容,从而提供所需的陡峭透射边缘且波动很小。我们即将在实验室条件下用ESFADOF演示首次温度测量。

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