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Ground-based demonstration of the European Laser Timing (ELT) experiment

机译:欧洲激光定时(ELT)实验的地面演示

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The development of techniques for the comparison of distant clocks and for the distribution of stable and accurate time scales has important applications in metrology and fundamental physics research. Additionally, the rapid progress of frequency standards in the optical domain is presently demanding additional efforts for improving the performances of existing time and frequency transfer links. Present clock comparison systems in the microwave domain are based on GPS and two-way satellite time and frequency transfer (TWSTFT). European Laser Timing (ELT) is an optical link presently under study in the frame of the ESA mission Atomic Clock Ensemble in Space (ACES). The on-board hardware for ELT consists of a corner cube retro-reflector (CCR), a single-photon avalanche diode (SPAD), and an event timer board connected to the ACES time scale. Light pulses fired toward ACES by a laser ranging station will be detected by the SPAD diode and time tagged in the ACES time scale. At the same time, the CCR will re-direct the laser pulse toward the ground station providing precise ranging information. We have carried out a ground-based feasibility study at the Geodetic Observatory Wettzell. By using ordinary satellites with laser reflectors and providing a second independent detection port and laser pulse timing unit with an independent time scale, it is possible to evaluate many aspects of the proposed time transfer link before the ACES launch.
机译:用于比较远时时钟以及分配稳定和准确的时标的技术的发展在计量学和基础物理学研究中具有重要的应用。另外,目前在光域中频率标准的快速发展要求为改善现有时间和频率传输链路的性能做出额外的努力。当前微波领域的时钟比较系统基于GPS和双向卫星时间和频率传输(TWSTFT)。欧洲激光定时(ELT)是目前在ESA任务太空原子钟组(ACES)框架中正在研究的一种光学链路。 ELT的板上硬件包括一个角锥后向反射器(CCR),一个单光子雪崩二极管(SPAD)和一个连接到ACES时标的事件计时器板。激光测距仪向ACES发射的光脉冲将由SPAD二极管检测,并在ACES时标中标记时间。同时,CCR将把激光脉冲重定向到地面站,从而提供精确的测距信息。我们已经在Wettzell大地观测站进行了基于地面的可行性研究。通过使用带有激光反射器的普通卫星并提供具有独立时间刻度的第二个独立检测端口和激光脉冲计时单元,可以在ACES启动之前评估建议的时间传输链路的许多方面。

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