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Gravitational Wave interferometers achieve their profound sensitivity by combining a Michelson interferometer with optical cavities, suspended masses, and now, squeezed quantum states of light.
V. B. Braginsky, Y. I. Vorontsov, and K. S. Thorne, Quantum Nondemolition Measurements, Science 209
1980
Earlier work this paper cites.
C. M. Caves and B. L. Schumaker, New formalism for two-photon quantum optics. I. Quadrature phases and squeezed states, Phys. Rev. A 31
1985
Earlier work this paper cites.
B. L. Schumaker and C. M. Caves, New formalism for two-photon quantum optics. II. Mathematical foundation and compact notation, Phys. Rev. A 31
1985
Earlier work this paper cites.
M. Xiao, L.-A. Wu, and H. J. Kimble, Precision measurement beyond the shot-noise limit, Phys. Rev. Lett. 59
1987
Earlier work this paper cites.
V. B. Braginsky, F. Y. Khalili, and K. S. Thorne, Quantum Measurement (Cambridge University Press, Cambridge, 1992)
1992
Earlier work this paper cites.
V. B. Braginsky and F. Y. Khalili, Quantum nondemolition measurements: The route from toys to tools, Rev. Mod. Phys. 68
1996
Earlier work this paper cites.
H. J. Kimble, Y. Levin, A. B. Matsko, K. S. Thorne, and S. P. Vyatchanin, Conversion of conventional gravitational-wave interferometers into quantum nondemolition interferometers by modifying their input and/or output optics, Phys. Rev. D 65
2001
Earlier work this paper cites.
A. Buonanno and Y. Chen, Quantum noise in second generation, signal-recycled laser interferometric gravitational-wave detectors, Phys. Rev. D 64
2001
Earlier work this paper cites.
A. Buonanno and Y. Chen, Scaling law in signal recycled laser-interferometer gravitational-wave detectors, Phys. Rev. D 67
2003
Earlier work this paper cites.
R. Schnabel, H. Vahlbruch, A. Franzen, S. Chelkowski, N. Grosse, H.-A. Bachor, W. P. Bowen, P. K. Lam, and K. Danzmann, Squeezed light at sideband frequencies below 100 kHz from a single OPA, Optics Communications 240
2004
Earlier work this paper cites.
T. Corbitt, N. Mavalvala, and S. Whitcomb, Optical cavities as amplitude filters for squeezed fields, Phys. Rev. D 70
2004
Earlier work this paper cites.
S. Chelkowski, H. Vahlbruch, B. Hage, A. Franzen, N. Lastzka, K. Danzmann, and R. Schnabel, Experimental characterization of frequency-dependent squeezed light, Phys. Rev. A 71
2005
Earlier work this paper cites.
E. E. Mikhailov, K. Goda, and N. Mavalvala, Noninvasive measurements of cavity parameters by use of squeezed vacuum, Phys. Rev. A 74
2006
Earlier work this paper cites.
T. Aoki, G. Takahashi, and A. Furusawa, Squeezing at 946nm with periodically poled KTiOPO_4, Opt. Express, OE 14
2006
Earlier work this paper cites.
H. Vahlbruch, S. Chelkowski, B. Hage, A. Franzen, K. Danzmann, and R. Schnabel, Coherent Control of Vacuum Squeezing in the Gravitational-Wave Detection Band, Phys. Rev. Lett. 97
2006
Earlier work this paper cites.
Y. Takeno, M. Yukawa, H. Yonezawa, and A. Furusawa, Observation of -9 dB quadrature squeezing with improvement of phase stability in homodyne measurement, Opt. Express, OE 15
2007
Earlier work this paper cites.
S. Chelkowski, H. Vahlbruch, K. Danzmann, and R. Schnabel, Coherent control of broadband vacuum squeezing, Phys. Rev. A 75
2007
Earlier work this paper cites.
F. Y. Khalili, Quantum variational measurement and the optical lever intracavity topology of gravitational-wave detectors, Phys. Rev. D 75
2007
Earlier work this paper cites.
R. L. Ward, R. Adhikari, B. Abbott, R. Abbott, D. Barron, R. Bork, T. Fricke, V. Frolov, J. Heefner, A. Ivanov, O. Miyakawa, K. McKenzie, B. Slagmolen, M. Smith, R. Taylor, S. Vass, S. Waldman, and A. Weinstein, Dc readout experiment at the Caltech 40m prototype interferometer, Class. Quantum Grav. 25
2008
Cited alongside, same era.
F. Y. Khalili, Increasing future gravitational-wave detectors’ sensitivity by means of amplitude filter cavities and quantum entanglement, Phys. Rev. D 77
2008
Cited alongside, same era.
S. Hild, H. Grote, J. Degallaix, S. Chelkowski, K. Danzmann, A. Freise, M. Hewitson, J. Hough, H. Lück, M. Prijatelj, K. A. Strain, J. R. Smith, and B. Willke, DC-readout of a signal-recycled gravitational wave detector, Class. Quantum Grav. 26
2009
Cited alongside, same era.
D. V. Martynov et al. (LSC Instrument Authors), Quantum correlation measurements in interferometric gravitational-wave detectors, Phys. Rev. A 95
2017
Later among the works it cites.
C. Cahillane, J. Betzwieser, D. A. Brown, E. Goetz, E. D. Hall, K. Izumi, S. Kandhasamy, S. Karki, J. S. Kissel, G. Mendell, R. L. Savage, D. Tuyenbayev, A. Urban, A. Viets, M. Wade, and A. J. Weinstein, Calibration uncertainty for Advanced LIGO’s first and second observing runs, Phys. Rev. D 96
2017
Later among the works it cites.
M. Tse et al. , Quantum-Enhanced Advanced LIGO Detectors in the Era of Gravitational-Wave Astronomy, Phys. Rev. Lett. 123
2019
Later among the works it cites.
F. Acernese et al. (Virgo Collaboration), Increasing the Astrophysical Reach of the Advanced Virgo Detector via the Application of Squeezed Vacuum States of Light, Phys. Rev. Lett. 123
2019
Later among the works it cites.
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2010
Cited alongside, same era.
2010
Cited alongside, same era.
F. Y. Khalili, Optimal configurations of filter cavity in future gravitational-wave detectors, Phys. Rev. D 81
2010
Cited alongside, same era.
A. Khalaidovski, H. Vahlbruch, N. Lastzka, C. Gräf, K. Danzmann, H. Grote, and R. Schnabel, Long-term stable squeezed vacuum state of light for gravitational wave detectors, Class. Quantum Grav. 29
2012
Cited alongside, same era.
F. Gao and L. Han, Implementing the Nelder-Mead simplex algorithm with adaptive parameters, Comput Optim Appl 51
2012
Cited alongside, same era.
S. L. Danilishin and F. Y. Khalili, Quantum Measurement Theory in Gravitational-Wave Detectors, Living Rev. Relativ. 15
2012
Cited alongside, same era.
T. T. Fricke, N. D. Smith-Lefebvre, R. Abbott, R. Adhikari, K. L. Dooley, M. Evans, P. Fritschel, V. V. Frolov, K. Kawabe, J. S. Kissel, B. J. J. Slagmolen, and S. J. Waldman, DC readout experiment in Enhanced LIGO, Class. Quantum Grav. 29
2012
Cited alongside, same era.
M. Evans, L. Barsotti, P. Kwee, J. Harms, and H. Miao, Realistic filter cavities for advanced gravitational wave detectors, Phys. Rev. D 88
2013
Cited alongside, same era.
S. Dwyer, L. Barsotti, S. S. Y. Chua, M. Evans, M. Factourovich, D. Gustafson, T. Isogai, K. Kawabe, A. Khalaidovski, P. K. Lam, M. Landry, N. Mavalvala, D. E. McClelland, G. D. Meadors, C. M. Mow-Lowry, R. Schnabel, R. M. S. Schofield, N. Smith-Lefebvre, M. Stefszky, C. Vorvick, and D. Sigg, Squeezed quadrature fluctuations in a gravitational wave detector using squeezed light, Opt. Express, OE 21
2013
Cited alongside, same era.
S. L. Danilishin, F. Y. Khalili, and H. Miao, Advanced quantum techniques for future gravitational-wave detectors, Living Rev Relativ 22
2019
Later among the works it cites.
A. Buikema et al. , Sensitivity and performance of the Advanced LIGO detectors in the third observing run, Phys. Rev. D 102
2020
Later among the works it cites.
H. Yu et al. , Quantum correlations between light and the kilogram-mass mirrors of LIGO, Nature 583
2020
Later among the works it cites.
F. Acernese et al. (The Virgo Collaboration), Quantum Backaction on kg-Scale Mirrors: Observation of Radiation Pressure Noise in the Advanced Virgo Detector, Phys. Rev. Lett. 125
2020
Later among the works it cites.
L. McCuller, C. Whittle, D. Ganapathy, K. Komori, M. Tse, A. Fernandez-Galiana, L. Barsotti, P. Fritschel, M. MacInnis, F. Matichard, K. Mason, N. Mavalvala, R. Mittleman, H. Yu, M. E. Zucker, and M. Evans, Frequency-Dependent Squeezing for Advanced LIGO, Phys. Rev. Lett. 124
2020
Later among the works it cites.
Y. Zhao, N. Aritomi, E. Capocasa, M. Leonardi, M. Eisenmann, Y. Guo, E. Polini, A. Tomura, K. Arai, Y. Aso, Y.-C. Huang, R.-K. Lee, H. Lück, O. Miyakawa, P. Prat, A. Shoda, M. Tacca, R. Takahashi, H. Vahlbruch, M. Vardaro, C.-M. Wu, M. Barsuglia, and R. Flaminio, Frequency-Dependent Squeezed Vacuum Source for Broadband Quantum Noise Reduction in Advanced Gravitational-Wave Detectors, Phys. Rev. Lett. 124
2020
Later among the works it cites.
C. Whittle, K. Komori, D. Ganapathy, L. McCuller, L. Barsotti, N. Mavalvala, and M. Evans, Optimal detuning for quantum filter cavities, Phys. Rev. D 102
2020
Later among the works it cites.
A. Perreca, A. F. Brooks, J. W. Richardson, D. Töyrä, and R. Smith, Analysis and visualization of the output mode-matching requirements for squeezing in Advanced LIGO and future gravitational wave detectors, Phys. Rev. D 101
2020
Later among the works it cites.
P. Virtanen, R. Gommers, T. E. Oliphant, M. Haberland, T. Reddy, D. Cournapeau, E. Burovski, P. Peterson, W. Weckesser, J. Bright, S. J. van der Walt, M. Brett, J. Wilson, K. J. Millman, N. Mayorov, A. R. J. Nelson, E. Jones, R. Kern, E. Larson, C. J. Carey, İ. Polat, Y. Feng, E. W. Moore, J. VanderPlas, D. Laxalde, J. Perktold, R. Cimrman, I. Henriksen, E. A. Quintero, C. R. Harris, A. M. Archibald, A. H. Ribeiro, F. Pedregosa, and P. van Mulbregt, SciPy 1.0: Fundamental algorithms for scientific computing in Python, Nat. Methods 17
2020
Later among the works it cites.
K. Komori, D. Ganapathy, C. Whittle, L. McCuller, L. Barsotti, N. Mavalvala, and M. Evans, Demonstration of an amplitude filter cavity at gravitational-wave frequencies, Phys. Rev. D 102
2020
Later among the works it cites.
L. Sun, E. Goetz, J. S. Kissel, J. Betzwieser, S. Karki, A. Viets, M. Wade, D. Bhattacharjee, V. Bossilkov, P. B. Covas, L. E. H. Datrier, R. Gray, S. Kandhasamy, Y. K. Lecoeuche, G. Mendell, T. Mistry, E. Payne, R. L. Savage, A. J. Weinstein, S. Aston, A. Buikema, C. Cahillane, J. C. Driggers, S. E. Dwyer, R. Kumar, and A. Urban, Characterization of systematic error in Advanced LIGO calibration, Class. Quantum Grav. 37
2020
Later among the works it cites.
J. Lough, E. Schreiber, F. Bergamin, H. Grote, M. Mehmet, H. Vahlbruch, C. Affeldt, M. Brinkmann, A. Bisht, V. Kringel, H. Lück, N. Mukund, S. Nadji, B. Sorazu, K. Strain, M. Weinert, and K. Danzmann, First Demonstration of 6 dB Quantum Noise Reduction in a Kilometer Scale Gravitational Wave Observatory, Phys. Rev. Lett. 126
2021
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D. Ganapathy, L. McCuller, J. G. Rollins, E. D. Hall, L. Barsotti, and M. Evans, Tuning Advanced LIGO to kilohertz signals from neutron-star collisions, Phys. Rev. D 103
2021
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