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首页> 外文期刊>Applied optics >Frequency and timing stability of an airborne injection-seeded Nd:YAG laser system for direct-detection wind lidar
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Frequency and timing stability of an airborne injection-seeded Nd:YAG laser system for direct-detection wind lidar

机译:用于直接检测风潮汐的机载喷射播种Nd:YAG激光系统的频率和定时稳定性

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摘要

We report on the design and performance of the laser deployed in the airborne demonstrator Doppler wind lidar for the Aeolus mission of the European Space Agency (ESA). The all-solid-state, diode-pumped and frequency-tripled Nd: YAG laser is realized as a master oscillator power amplifier (MOPA) system, generating 60 mJ of single-frequency pulses at 355 nm wavelength, 50 Hz repetition rate and 20 ns pulse duration. For the measurement of the Doppler frequency shift over several accumulated laser shots, the frequency stability of the laser is of crucial importance. Injection-seeding, in combination with an active cavity control based on the Ramp-Delay-Fire technique, provides a pulse-to-pulse frequency stability of 0.25 MHz measured at 1064 nm under laboratory conditions. This value increases to 0.31 MHz for airborne operation in a vibration environment that has been characterized by multiple acceleration sensors during different flight conditions. In addition, a pure Ramp-Fire setting was tested for comparison leading to a frequency stability of 0.16 MHz both in airborne operation and on ground. The laser cavity control electronics also have to provide a trigger signal for the lidar detection electronics, about 60 mu s prior to the expected laser pulse emission and with high timing stability. An in-flight timing stability of below 100 ns was measured decreasing to 20 ns for a shorter pre-trigger time of 10 mu s. (C) 2017 Optical Society of America
机译:我们报告了欧洲航天局的Aeolus Mission(ESA)的Airbore Sextoper Doppler Wind Lidar的激光的设计和性能。全固态,二极管泵浦和变频的Nd:YAG激光器被实现为主振荡器功率放大器(MOPA)系统,在355nm波长,50 Hz重复率和20处产生60 MJ的单频脉冲ns脉冲持续时间。对于多普勒频率偏移在几个累积的激光镜头上测量,激光的频率稳定性至关重要。注射接种与基于斜坡延迟灭火技术的主动腔控制结合,在实验室条件下在1064nm下测量0.25MHz的脉冲到脉冲频率稳定性。对于在不同飞行条件下的多个加速度传感器的振动环境中,该值增加到0.31MHz。此外,测试纯斜坡 - 火灾设定以进行比较,导致空气传播操作和地面上的0.16MHz的频率稳定性。激光腔控制电子器件还必须在预期激光脉冲发射之前和具有高正时稳定性之前提供LIDAR检测电子器件的触发信号,大约60μs。测量下降100ns的飞行中的时序稳定性降低到20 ns以获得10μm的较短预触发时间。 (c)2017年光学学会

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  • 来源
    《Applied optics》 |2017年第32期|共12页
  • 作者单位

    Deutsch Zentrum Luft &

    Raumfahrt DLR eV Inst Phys Atmosphare D-82234 Wessling Germany;

    Deutsch Zentrum Luft &

    Raumfahrt DLR eV Inst Phys Atmosphare D-82234 Wessling Germany;

    Deutsch Zentrum Luft &

    Raumfahrt DLR eV Inst Phys Atmosphare D-82234 Wessling Germany;

    Deutsch Zentrum Luft &

    Raumfahrt DLR eV Inst Phys Atmosphare D-82234 Wessling Germany;

    Airbus Def &

    Space GmbH D-82024 Taufkirchen Germany;

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  • 正文语种 eng
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