Author:
Tobar ME,Blair DG,Ivanov EN,van Kann F,Linthorne NP,Turner PJ,Heng IS
Abstract
The cryogenic resonant-mass gravitational radiation antenna at the University of Western Australia (UWA) has obtained a noise temperature of <2 mK using a zero order predictor filter. This corresponds to aIms burst strain sensitivity of 7x 10-19 . The antenna has been in continuous operation since August 1993. The antenna operates at about 5 K and consists of a 1� 5 tonne niobium bar with a 710 Hz fundamental frequency, and a closely tuned secondary mass of 0�45 kg effective mass. The vibrational state of the secondary mass is continuously monitored by a 9�5 GHz superconducting parametric transducer. This paper presents the current design and operation of the detector. From a two-mode model we show how we calibrate, characterise and theoretically determine the sensitivity of our detector. Experimental results confirm the theory.
Subject
General Physics and Astronomy
Cited by
7 articles.
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