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      Global Feed-Forward Vibration Isolation in a km scale Interferometer

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          Abstract

          Using a network of seismometers and sets of optimal filters, we implemented a feed-forward control technique to minimize the seismic contribution to multiple interferometric degrees of freedom of the LIGO interferometers. The filters are constructed by using the Levinson-Durbin recursion relation to approximate the optimal Wiener filter. By reducing the RMS of the interferometer feedback signals below \sim10 Hz, we have improved the stability and duty cycle of the joint network of gravitational wave detectors. By suppressing the large control forces and mirror motions, we have dramatically reduced the rate of non-Gaussian transients in the gravitational wave signal stream.

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          Rational approximation of frequency domain responses by vector fitting

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            Impact of upconverted scattered light on advanced interferometric gravitational wave detectors

            Second generation gravitational wave detectors are being installed in a number of locations globally. These long-baseline, Michelson interferometers increase the sensitivity between 10 and 40 Hz by many orders of magnitude compared with first generation instruments. Control of non-linear noise coupling from scattered light fields is critical to achieve low frequency performance. In this paper we investigate the requirements on the attenuation of scattered light using a novel time-domain analysis and two years of seismic data from the LIGO Livingston Observatory.
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              Review: Requirements for a Ground Rotation Sensor to Improve Advanced LIGO

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                Author and article information

                Journal
                24 April 2012
                2012-05-24
                Article
                10.1088/0264-9381/29/21/215008
                1204.5504
                7e24860f-053d-4dc7-b621-f86218a97782

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                LIGO-P1000088
                2012 Class. Quantum Grav. 29 215008
                7 pages
                physics.ins-det

                Technical & Applied physics
                Technical & Applied physics

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