• Open Access

Gravitational wave sensors based on superconducting transducers

Armen Gulian, Joe Foreman, Vahan Nikoghosyan, Louis Sica, Pablo Abramian-Barco, Jeff Tollaksen, Gurgen Melkonyan, Iris Mowgood, Chris Burdette, Rajendra Dulal, Serafim Teknowijoyo, Sara Chahid, and Shmuel Nussinov
Phys. Rev. Research 3, 043098 – Published 8 November 2021
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Abstract

Following the initial success of LIGO, new advances in gravitational wave (GW) detector systems are planned to reach fruition during the next decades. These systems are interferometric and large. Here we suggest different, more compact detectors of GW radiation with competitive sensitivity. These nonresonant detectors are not interferometric. They use superconducting Cooper pairs in a magnetic field to transform mechanical motion induced by GW into detectable magnetic flux. The detectors can be oriented relative to the source of GW, so as to maximize the signal output and help determine the direction of nontransient sources. In this design an incident GW rotates infinitesimally a system of massive barbells and superconducting frames attached to them. This last rotation relative to a strong magnetic field generates a signal of superconducting currents. The suggested arrangement of superconducting signal sources facilitates rejection of noise due to stray electromagnetic fields. In addition to signal analysis, we provide estimates of mechanical noise of the detector, taking into account temperature and elastic properties of the loops and barbells. We analyze at which parameters of the system a competitive strain sensitivity could be achieved. We have tested the basic idea of the detector in the laboratory and reached the theoretical Johnson-Nyquist noise limit with multiturn coils of normal metal. Realization of full-blown superconducting detectors can serve as viable alternatives to interferometric devices.

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  • Received 26 March 2021
  • Accepted 15 October 2021

DOI:https://doi.org/10.1103/PhysRevResearch.3.043098

Published by the American Physical Society under the terms of the Creative Commons Attribution 4.0 International license. Further distribution of this work must maintain attribution to the author(s) and the published article's title, journal citation, and DOI.

Published by the American Physical Society

Physics Subject Headings (PhySH)

Gravitation, Cosmology & Astrophysics

Authors & Affiliations

Armen Gulian1,2,*, Joe Foreman3, Vahan Nikoghosyan1,4, Louis Sica1, Pablo Abramian-Barco5, Jeff Tollaksen1,2, Gurgen Melkonyan1, Iris Mowgood1, Chris Burdette1, Rajendra Dulal1,2, Serafim Teknowijoyo1,2, Sara Chahid1,2, and Shmuel Nussinov1,6

  • 1Advanced Physics Laboratory, Institute for Quantum Studies, Chapman University, Burtonsville, Maryland 20866, USA
  • 2Schmid College of Science and Technology, Chapman University, Orange, California 92866, USA
  • 3Independent Researcher, Alexandria, Virginia 22310, USA
  • 4Institute for Physics Research, National Academy of Sciences, Ashtarak, 0203, Armenia
  • 5CIEMAT, Madrid 28040, Spain
  • 6School of Physics and Astronomy, Tel Aviv University, Ramat Aviv 69978, Tel Aviv, Israel

  • *Corresponding author: gulian@chapman.edu

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Issue

Vol. 3, Iss. 4 — November - December 2021

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