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Photon counting detector package optimized for laser time transfer with sub-picosecond limiting precision and stability

机译:光子计数检测器套件针对激光时间传输进行了优化,具有亚皮秒级的限制精度和稳定性

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The laser time transfer ground to space is an attractive technique to compare the ultra-stable clocks on ground and in space. The photon counting approach enables to reduce significantly the systematic errors of the measurement chain. For the space mission nominated for the next decade the precision and long term detection delay stability requirements are on sub-picosecond level. We have developed a new SPAD detector package for laser time transfer ground to space with extremely high timing precision and stability. It is based on 100 urn or 200 um diameter K14 series SPAD chips. The device presented is primarily dedicated for a ground segment of the laser time transfer instrument chain. Applying such a detector the limiting precision of laser time transfer characterized by time deviation TDEV is well below 100 fs. The long term timing stability is better than 1 ps over days of operation. The detector package is constructed on a basis of electronics components for which the space qualified equivalents are available. The device construction, tests and results will be presented in detail.
机译:激光时间转移到空间是一种有吸引力的技术,可比较地面和空间的超稳定时钟。光子计数方法使得能够显着降低测量链的系统误差。对于未来十年提名的空间任务,精度和长期检测延迟稳定性稳定性要求在亚微微秒级上。我们开发了一种用于激光时间转移到空间的新的Spad探测器包,具有极高的定时精度和稳定性。它基于100个URN或200 UM直径K14系列芯片。所示的器件主要专用于激光时间转移仪表链的地面段。应用这种探测器的限制精度,其特征在于时间偏差TDEV,远低于100 fs。长期定时稳定性在运行时数优于1 ps。检测器包的基础构造了空间合格等同物的电子组件。将详细介绍设备结构,测试和结果。

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