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High-brightness all semiconductor laser at 1.57 μm for space-borne lidar measurements of atmospheric carbon dioxide: device design and analysis of requirements

机译:1.57μm高亮度全半导体激光器,用于大气二氧化碳的星载激光雷达测量:设备设计和需求分析

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摘要

The availability of suitable laser sources is one of the main challenges in future space missions for accurate measurement of atmospheric CO_2. The main objective of the European project BRITESPACE is to demonstrate the feasibility of an all-semiconductor laser source to be used as a space-borne laser transmitter in an Integrated Path Differential Absorption (IPDA) lidar system. We present here the proposed transmitter and system architectures, the initial device design and the results of the simulations performed in order to estimate the source requirements in terms of power, beam quality, and spectral properties to achieve the required measurement accuracy. The laser transmitter is based on two InGaAsP/InP monolithic Master Oscillator Power Amplifiers (MOPAs), providing the ON and OFF wavelengths close to the selected absorption line around 1.57 μm. Each MOPA consists of a frequency stabilized Distributed Feedback (DFB) master oscillator, a modulator section, and a tapered semiconductor amplifier optimized to maximize the optical output power. The design of the space-compliant laser module includes the beam forming optics and the thermoelectric coolers.The proposed system replaces the conventional pulsed source with a modulated continuous wave source using the Random Modulation-Continuous Wave (RM-CW) approach, allowing the designed semiconductor MOPA to be applicable in such applications. The system requirements for obtaining a CO_2 retrieval accuracy of 1 ppmv and a spatial resolution of less than 10 meters have been defined. Envelope estimated of the returns indicate that the average power needed is of a few watts and that the main noise source is the ambient noise.
机译:合适的激光源的可用性是未来太空飞行中精确测量大气CO_2的主要挑战之一。欧洲项目BRITESPACE的主要目标是证明在全路径差分吸收(IPDA)激光雷达系统中用作空间激光发射器的全半导体激光源的可行性。我们在这里介绍拟议的发射机和系统架构,初始设备设计以及所执行的仿真结果,以便根据功率,波束质量和频谱特性估算光源要求,以达到所需的测量精度。激光发射器基于两个InGaAsP / InP单片主振荡器功率放大器(MOPA),可提供接近所选吸收线1.57μm的ON和OFF波长。每个MOPA包括一个频率稳定的分布式反馈(DFB)主振荡器,一个调制器部分和一个优化的锥形半导体放大器,以使光输出功率最大化。符合空间要求的激光模块的设计包括束形成光学器件和热电冷却器。拟议的系统使用随机调制连续波(RM-CW)方法将常规脉冲源替换为调制连续波源,从而使设计成为可能。半导体MOPA适用于此类应用。已经定义了获得1 ppmv的CO_2回收精度和小于10米的空间分辨率的系统要求。估算得出的包络线表明,所需的平均功率为几瓦,而主要噪声源是环境噪声。

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  • 来源
    《Laser sources and applications II》|2014年|913516.1-913516.8|共8页
  • 会议地点 Brussels(BE)
  • 作者单位

    Universidad Politecnica de Madrid, ETSI Telecomunicacion-CEMDATIC, Avda. Complutense 22, 28040 Madrid, Spain;

    Universidad Politecnica de Madrid, ETSI Telecomunicacion-CEMDATIC, Avda. Complutense 22, 28040 Madrid, Spain;

    Ⅲ-Ⅴ Lab Campus Polytechnique, 1, Avenue A. Fresnel, 91767 Palaiseau cedex, France;

    Ⅲ-Ⅴ Lab Campus Polytechnique, 1, Avenue A. Fresnel, 91767 Palaiseau cedex, France;

    Fraunhofer Institute for Laser Technology ILT, Steinbachstrasse 15, Aachen 52074, Germany;

    Fraunhofer Institute for Laser Technology ILT, Steinbachstrasse 15, Aachen 52074, Germany;

    Alter Technology Tuev Nord S.A.U., Calle Majada 3, 28760 Tres Cantos, Madrid, Spain;

    Alter Technology Tuev Nord S.A.U., Calle Majada 3, 28760 Tres Cantos, Madrid, Spain;

    University of Bristol, Woodland Road, Bristol, BS8 1UB, United Kingdom;

    University of Bristol, Woodland Road, Bristol, BS8 1UB, United Kingdom;

    Institut fuer Physik der Atmosphaere, DLR, Oberpfaffenhofen, Muenchner Strasse 20, 82234 Wessling, Germany;

    Institut fuer Physik der Atmosphaere, DLR, Oberpfaffenhofen, Muenchner Strasse 20, 82234 Wessling, Germany;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Earth observation from space; differential absorption lidar; semiconductor lasers; random modulation continuous wave lidar; integrated master oscillator power amplifiers; laser frequency locking;

    机译:从太空对地球的观察;差分吸收激光雷达半导体激光器;随机调制连续波激光雷达集成主振荡器功率放大器;激光锁频;

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