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Increasing the Astrophysical Reach of the Advanced Virgo Detector via the Application of Squeezed Vacuum States of Light

Autor
Idźkowski, Bartosz
Rosińska, Dorota
Tringali, Maria
Acernese, F.
Agathos, M.
Aiello, L.
Allocca, A.
Amato, A.
Ansoldi, S.
Antier, S.
Data publikacji
2019
Abstrakt (EN)

Current interferometric gravitational-wave detectors are limited by quantum noise over a wide range of their measurement bandwidth. One method to overcome the quantum limit is the injection of squeezed vacuum states of light into the interferometer's dark port. Here, we report on the successful application of this quantum technology to improve the shot noise limited sensitivity of the Advanced Virgo gravitational-wave detector. A sensitivity enhancement of up to 3.2 ±0.1 dB beyond the shot noise limit is achieved. This nonclassical improvement corresponds to a 5%-8% increase of the binary neutron star horizon. The squeezing injection was fully automated and over the first 5 months of the third joint LIGO-Virgo observation run O3 squeezing was applied for more than 99% of the science time. During this period several gravitational-wave candidates have been recorded.

Dyscyplina PBN
astronomia
Czasopismo
Physical Review Letters
Tom
123
Zeszyt
23
Strony od-do
231108
ISSN
0031-9007
Data udostępnienia w otwartym dostępie
2019-12-05
Licencja otwartego dostępu
Uznanie autorstwa