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Optical motion sensor for resonant-bar gravitational wave antennasAn experiment is described in which an optical method was used to measure fluctuations in the separation between two mirrors of a Fabry-Perot sensor cavity. Noise measurements were made to determine the sensitivity of this device to vibration amplitudes in the frequency range 1.1-2.1 kHz, which is of interest for resonant-bar gravitational wave antennas. The rms spectral noise density for length fluctuations in this range was sq rt 3.7 x 10 exp -15 m/Hz and can be related to electronic noise of the circuitry plus vibrational noise from the environment. The cavity finesse was relatively low at 117, and the power dissipated in the mirrors was estimated to be 1.9 micro-W. On a multimode gravitational wave detector, the sensor cavity would be formed by one reference mirror and by one mirror mounted on the last resonator. For a 1200-kg bar, 1.2-g last resonator system operating at 1600 Hz the sensor described here would exhibit a noise temperature of 18 micro-K; the resolution in h in the case of negligible thermal noise from the mechanical system would be sq rt 3.7 x 10 exp -18/Hz. Improvements in the sensitivity in a quiet antenna-like environment should be possible with higher finesse mirrors.
Document ID
19920051370
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
Richard, J.-P.
(NASA Headquarters Washington, DC United States)
Pang, Y.
(NASA Headquarters Washington, DC United States)
Hamilton, J. J.
(Maryland, University College Park, United States)
Date Acquired
August 15, 2013
Publication Date
April 1, 1992
Publication Information
Publication: Applied Optics
Volume: 31
ISSN: 0003-6935
Subject Category
Instrumentation And Photography
Accession Number
92A33994
Distribution Limits
Public
Copyright
Other

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