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Application of the guided lock technique to Advanced Virgo's high-finesse cavities using reduced actuation

机译:使用减少的致动,引导锁定技术在高级处女座高精度腔中的应用

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摘要

The recent upgrades of the Advanced Virgo experiment required an update of the locking strategy for the long, high-finesse arm cavities of the detector. In this work we will present a full description of the requirements and the constraints of such system in relation to the lock acquisition of the cavities; the focus of this work is the strategy used to accomplish this goal, which is the adaptation and use of the guided lock technique, which dynamically slows down a suspended optical cavity in order to make the lock possible. This work describes the first application of such locking technique to 3 km long optical cavities, which are affected by stringent constraints as the low force available on the actuators, the high finesse and the maximum sustainable speed of the cavities, which is quite low due to a number of technical reasons that will be explained. A full set of optical time domain simulations has been developed in order to study the feasibility and the performance of this algorithm and will be throughout discussed, while finally the application on the real Advanced Virgo's arm cavities will be reported.
机译:最近升级的高级处女座实验需要更新探测器的长,高精细臂腔的锁定策略。在这项工作中,我们将完整地描述关于这种系统的要求和限制与腔的锁定采集相关;这项工作的重点是用于实现这一目标的策略,这是引导锁定技术的适应和使用,其动态地减慢悬浮光腔以使锁成为可能。该工作描述了这种锁定技术的第一次应用于3公里的长光腔,这受到严格约束的严格约束的影响,作为致动器上可用的低力,高精度和空腔的最大可持续速度,这是相当低的将解释的许多技术原因。已经开发了一整套光学时域模拟,以研究该算法的可行性和性能,并将在整个讨论中,虽然最终将报告真正先进的处长臂腔的应用。

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