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首页> 外文期刊>Advances in space research >Photon counting detector for space debris laser tracking and lunar laser ranging
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Photon counting detector for space debris laser tracking and lunar laser ranging

机译:用于空间碎片激光跟踪和月球激光测距的光子计数检测器

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摘要

We are reporting on a design, construction and performance of solid state photon counting detector package which has been designed for laser tracking of space debris. The detector has been optimized for top photon detection efficiency and detection delay stability. The active area of the commercially available avalanche photodiode manufactured on Si (SAP500 supplied by Laser Components, Inc.) is circular with a diameter of 500 urn. The newly designed control circuit enables to operate the detection sensor at a broad range of biases 5-50 V above its breakdown voltage of 125 V. This permits to select a right trade-off between photon detection efficiency, timing resolution and dark count rate. The photon detection efficiency exceeds 70% at the wavelength of 532 nm. This is the highest photon detection efficiency ever reported for such a device. The timing properties of the detector have been investigated in detail. The timing resolution is better than 80 ps r.m.s, the detection delay is stable within units of picoseconds over several hours of operation. The detection delay stability in a sense of time deviation of 800 fs has been achieved. The temperature change of the detection delay is 0.5 ps/K. The detector has been tested as an echo signal detector in laser tracking of space debris at the satellite laser station in Graz, Austria. Its application in lunar laser ranging is under consideration by several laser stations.
机译:我们正在报告固态光子计数检测器套件的设计,构造和性能,该套件设计用于对空间碎片进行激光跟踪。该探测器针对顶部光子探测效率和探测延迟稳定性进行了优化。在Si(由Laser Components,Inc。提供的SAP500)上制造的市售雪崩光电二极管的活性区域是直径为500μm的圆形。新设计的控制电路使检测传感器能够在高于其击穿电压125 V的5-50 V的宽范围偏置下运行。这允许在光子检测效率,定时分辨率和暗计数率之间进行权衡。在532 nm的波长下,光子检测效率超过70%。这是有史以来针对此类设备报告的最高光子检测效率。检测器的定时特性已被详细研究。定时分辨率优于80 ps r.m.s,在几个小时的运行中,检测延迟在皮秒单位内保持稳定。在800 fs的时间偏差意义上实现了检测延迟稳定性。检测延迟的温度变化为0.5 ps / K。该探测器已经在奥地利格拉茨的卫星激光站对太空碎片进行激光跟踪时作为回波信号探测器进行了测试。它在月球激光测距中的应用正在被几个激光站所考虑。

著录项

  • 来源
    《Advances in space research》 |2014年第4期|755-758|共4页
  • 作者单位

    Czech Technical University in Prague, Brehova 7, 115 19 Prague, Czech Republic;

    Czech Technical University in Prague, Brehova 7, 115 19 Prague, Czech Republic,Technische Universitaet Muenchen, Fundamental station Wettzell, Sackenrieder Str. 25, 93444 Bad Koetzting, Germany;

    Czech Technical University in Prague, Brehova 7, 115 19 Prague, Czech Republic;

    Space Research Institute of the Austrian Academy of Sciences, Lustbuehelstrasse 46, A-8042 Graz, Austria;

    Space Research Institute of the Austrian Academy of Sciences, Lustbuehelstrasse 46, A-8042 Graz, Austria;

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

    Photon counting detector; Laser ranging; Space debris; Lunar laser ranging;

    机译:光子计数检测器;激光测距空间碎片;月球激光测距;

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