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Space missions to detect the cosmic gravitational-wave background

Neil J Cornish et al 2001 Class. Quantum Grav. 18 3473-3495   doi: 10.1088/0264-9381/18/17/308  Help

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Neil J Cornish1 and Shane L Larson
Department of Physics, Montana State University, Bozeman, MT 59717, USA
1 Author to whom correspondence should be addressed.
E-mail: cornish@physics.montana.edu

Abstract. It is thought that a stochastic background of gravitational waves was produced during the formation of the universe. A great deal could be learned by measuring this cosmic gravitational-wave background (CGB), but detecting the CGB presents a significant technological challenge. The signal strength is expected to be extremely weak, and there will be competition from unresolved astrophysical foregrounds such as white dwarf binaries. Our goal is to identify the most promising approach to detecting the CGB. We study the sensitivities that can be reached using both individual, and cross-correlated pairs of space-based interferometers. Our main result is a general, coordinate-free formalism for calculating the detector response that applies to arbitrary detector configurations. We use this general formalism to identify some promising designs for a gravitational background interferometer mission. Our conclusion is that detecting the CGB may not be out of reach.

PACS numbers: 9870, 9880

Print publication: Issue 17 (7 September 2001)
Received 2 April 2001, in final form 18 May 2001
Published 14 August 2001

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