Nondegenerate internal squeezing: An all-optical, loss-resistant quantum technique for gravitational-wave detection

The detection of kilohertz-band gravitational waves promises discoveries in astrophysics, exotic matter, and cosmology. To improve the kilohertz quantum noise-limited sensitivity of interferometric gravitational -wave detectors, we investigate nondegenerate internal squeezing: optical parametric osc...

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Veröffentlicht in:Physical review. D 2022-08, Vol.106 (4), Article L041101
Hauptverfasser: Gardner, James W., Yap, Min Jet, Adya, Vaishali, Chua, Sheon, Slagmolen, Bram J. J., McClelland, David E.
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Sprache:eng
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Zusammenfassung:The detection of kilohertz-band gravitational waves promises discoveries in astrophysics, exotic matter, and cosmology. To improve the kilohertz quantum noise-limited sensitivity of interferometric gravitational -wave detectors, we investigate nondegenerate internal squeezing: optical parametric oscillation inside the signal-recycling cavity with distinct signal-mode and idler-mode frequencies. We use an analytic Hamiltonian model to show that this stable, all-optical technique is tolerant to decoherence from optical detection loss and that it, with its optimal readout scheme, is feasible for broadband sensitivity enhancement.
ISSN:2470-0010
2470-0029
2470-0029
DOI:10.1103/PhysRevD.106.L041101