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Frequency jitter and spectral width of an injection-seeded Q-switched Nd: YAG laser for a Doppler wind lidar

机译:用于多普勒风激光雷达的注入种子的Q开关Nd:YAG激光器的频率抖动和频谱宽度

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The design of a 50 Hz single longitudinal mode, diode-pumped and frequency-tripled Nd:YAG master oscillator power amplifier is described, and the first measurements of output parameters are presented. The laser oscillator is injection-seeded by a tuneable monolithic Nd:YAG ring laser and frequency stabilized by minimising the Q-switch build-up time. The laser system will be an integral part of an airborne instrument demonstrator for a first satellite based Doppler wind lidar to measure vertical profiles of one component of the atmospheric wind vector. This paper focuses on the investigation of the frequency jitter and the linewidth of the laser, which are measured on a pulse-to-pulse basis. For this purpose a compact, high accuracy beat frequency monitoring system has been developed at DLR. By operating the amplifier stage at half the repetition rate (50 Hz) of the oscillator, we could reduce the frequency stability from l0MHz(rms) to 1.3MHz(rms) (over a 14 s period). We have determined a mean linewidth of 15 MHz (FWHM) at 1064 nm. These measured laser parameters enable wind velocity measurements in the atmosphere (0-15 km) at an accuracy of 1 to 2 m/s.
机译:描述了50 Hz单纵模,泵浦和三倍频Nd:YAG主振荡器功率放大器的设计,并给出了输出参数的首次测量结果。激光振荡器由可调Nd:YAG单片环形激光器注入种子,并通过最小化Q开关建立时间来使频率稳定。该激光系统将成为用于首个基于卫星的多普勒风激光雷达的机载仪器演示器不可或缺的一部分,以测量大气风矢量的一个分量的垂直剖面。本文重点研究基于脉冲到脉冲测量的激光的频率抖动和线宽。为此,DLR开发了一种紧凑的高精度拍频监测系统。通过使放大器级以振荡器的重复频率(50 Hz)的一半工作,我们可以将频率稳定性从10MHz(rms)降低到1.3MHz(rms)(在14 s的时间内)。我们确定1064 nm处的平均线宽为15 MHz(FWHM)。这些测得的激光参数能够以1至2 m / s的精度测量大气(0-15 km)中的风速。

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