Study of a cubic cavity resonator for gravitational waves detection in the microwave frequency range

Author:

Navarro Pablo1ORCID,Gimeno Benito2ORCID,Monzó-Cabrera Juan1ORCID,Díaz-Morcillo Alejandro1ORCID,Blas Diego34ORCID

Affiliation:

1. Universidad Politécnica de Cartagena

2. CSIC-University of Valencia

3. The Barcelona Institute of Science and Technology

4. Institució Catalana de Recerca i Estudis Avançats (ICREA)

Abstract

The direct detection of gravitational waves (GWs) of frequencies above MHz has recently received considerable attention. In this work, we present a precise study of the reach of a cubic cavity resonator to GWs in the microwave range, using for the first time tools allowing to perform realistic simulations. Concretely, the boundary integral—resonant mode expansion (BI-RME) 3D method, which allows us to obtain not only the detected power but also the detected voltage (magnitude and phase), is used here. After analyzing three cubic cavities for different frequencies and working simultaneously with three different degenerate modes at each cavity, we conclude that the sensitivity of the experiment is strongly dependent on the polarization and incidence angle of the GW. The presented experiment can reach sensitivities up to 1×1019 at 100 MHz, 2×1020 at 1 GHz, and 6×1019 at 10 GHz for optimal angles and polarizations, and where in all cases we assumed an integration time of Δt=1ms. These results provide a strong case for further developing the use of cavities to detect GWs. Moreover, the possibility of analyzing the detected voltage (magnitude and phase) opens a new interferometric detection scheme based on the combination of the detected signals from multiple cavities. Published by the American Physical Society 2024

Funder

Ministerio de Ciencia e Innovación

Agencia Estatal de Investigación

Generalitat Valenciana

European Cooperation in Science and Technology

Generalitat de Catalunya

Publisher

American Physical Society (APS)

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