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Astrophysics from data analysis of spherical gravitational wave detectors
Authors:César H. Lenzi  Nadja S. Magalhães  César A. Costa  Rubens M. Marinho Jr  Helmo A. B. Araújo  Odylio D. Aguiar
Affiliation:1. Departamento de Física, Instituto Tecnológico de Aeronáutica, Pra?a Marechal Eduardo Gomes 50, S?o José dos Campos, SP, 12228-900, Brazil
2. Centro Federal de Educa??o Tecnológica de S?o Paulo, R. Dr. Pedro Vicente 625, S?o Paulo, SP, 01109-010, Brazil
3. Departamento de Astrofísica, Instituto Nacional de Pesquisas Espaciais, Av. dos Astronautas 1.758, S?o José dos Campos, SP, 12227-010, Brazil
Abstract:The direct detection of gravitational waves will provide valuable astrophysical information about many celestial objects. Also, it will be an important test to general relativity and other theories of gravitation. The gravitational wave detector SCHENBERG has recently undergone its first test run. It is expected to have its first scientific run soon. In this work the data analysis system of this spherical, resonant mass detector is tested through the simulation of the detection of gravitational waves generated during the inspiralling phase of a binary system. It is shown from the simulated data that it is not necessary to have all six transducers operational in order to determine the source’s direction and the wave’s amplitudes.
Keywords:Gravitational waves  Spherical gravitational wave detector  Inverse problem solution  Method of independent bars
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