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arxiv: gr-qc/9709045 · v1 · submitted 1997-09-18 · 🌀 gr-qc · hep-th

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Cross Section of a Resonant-Mass Detector for Scalar Gravitational Waves

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classification 🌀 gr-qc hep-th
keywords gravitationalscalardetectorwavescrossresonant-masstheoryabsorption
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Gravitationally coupled scalar fields, originally introduced by Jordan, Brans and Dicke to account for a non constant gravitational coupling, are a prediction of many non-Einsteinian theories of gravity not excluding perturbative formulations of String Theory. In this paper, we compute the cross sections for scattering and absorption of scalar and tensor gravitational waves by a resonant-mass detector in the framework of the Jordan-Brans-Dicke theory. The results are then specialized to the case of a detector of spherical shape and shown to reproduce those obtained in General Relativity in a certain limit. Eventually we discuss the potential detectability of scalar waves emitted in a spherically symmetric gravitational collapse.

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