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Advanced LIGO Two-Stage Twelve-Axis Vibration Isolation and Positioning Platform. Part 1: Design and Production Overview

Authors :
Matichard, Fabrice
Lantz, Brian
Mason, Kenneth
Mittleman, Richard
Abbott, Benjamin
Abbott, Samuel
Allwine, Eric
Barnum, Samuel
Birch, Jeremy
Biscans, Sebastien
Clark, Daniel
Coyne, Dennis
DeBra, Dan
DeRosa, Ryan
Foley, Stephany
Fritschel, Peter
Giaime, Joseph A
Gray, Corey
Grabeel, Gregory
Hanson, Joe
Hillard, Michael
Kissel, Jeffrey
Kucharczyk, Christopher
Roux, Adrien Le
Lhuillier, Vincent
Macinnis, Myron
OReilly, Brian
Ottaway, David
Paris, Hugo
Puma, Michael
Radkins, Hugh
Ramet, Celine
Robinson, Mitchell
Ruet, Laurent
Sareen, Pradeep
Shoemaker, Daivid
Stein, Andy
Thomas, Jeremy
Vargas, Michael
Warner, Jimmy
Publication Year :
2014

Abstract

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 interferometers core optics. This five-ton two-and-half-meter wide system operates 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/Hz^(0.5) at 1 Hz. Active and passive isolation combine to bring the platform motion below 10^(-12) m/Hz^(0.5) at 10 Hz. The passive isolation lowers the motion below 10^(-13) m/Hz^(0.5) 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.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....1007cba0dc5064c7da5b57854994e312