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Advanced LIGO two-stage twelve-axis vibration isolation and positioning platform. Part 1: Design and production overview

机译:先进的LIGO两级十二轴隔振和定位平台。第1部分:设计和生产概述

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New generations of gravity wave detectors require unprecedented levels of vibration isolation. This paper presents the final design of the vibration isolation and positioning platform used in Advanced LIGO to support the interferometer's core optics. This five-ton two-and-half-m wide system operating in ultra-high vacuum. It features two stages of isolation mounted in series. The stages are imbricated to reduce the overall height. Each stage provides isolation in all directions of translation and rotation. The system is instrumented with a unique combination of low noise relative and inertial sensors. The active control provides isolation from 0.1 Hz to 30 Hz. It brings the platform motion down to 10(-11) m/root Hz at 1 Hz. Active and passive isolation combine to bring the platform motion below 10(-12) m/root Hz at 10 Hz. The passive isolation lowers the motion below 10(-13) m/root Hz at 100 Hz. The paper describes how the platform has been engineered not only to meet the isolation requirements, but also to permit the construction, testing, and commissioning process of the fifteen units needed for Advanced LIGO observatories. Published by Elsevier Inc.
机译:新一代重力波探测器需要前所未有的隔振水平。本文介绍了高级LIGO中用于支持干涉仪核心光学元件的隔振和定位平台的最终设计。这个五吨重,两米半的系统在超高真空下运行。它具有两个串联安装的隔离级。载物台都装有胶水,以降低整体高度。每个阶段都在所有平移和旋转方向上提供隔离。该系统配备了低噪声相对和惯性传感器的独特组合。有源控件可提供0.1 Hz至30 Hz的隔离度。它使平台运动在1 Hz下降至10(-11)m / root Hz。主动和被动隔离相结合,使平台运动在10 Hz下低于10(-12)m / root Hz。被动隔离将运动降低到100 Hz时低于10(-13)m / root Hz的运动。本文描述了如何设计平台,不仅要满足隔离要求,而且要允许高级LIGO天文台所需的十五个单元的建设,测试和调试过程。由Elsevier Inc.发布

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