Publications

Publications#

2024#

  • Y. Zhao , M. Vardaro, E. Capocasa, J. Ding, Y. Guo, M. Lequime and M. Barsuglia “Optical losses as a function of beam position on the mirrors in a 285-m suspended Fabry-Perot cavity” Phys. Rev. Applied 22, 054040 (2024)

  • L. D. Bonavena et al. “Thermal detuning of a bichromatic narrow linewidth optical cavity” Phys. Rev. A 109, 043709 (2024)

2023#

  • A. Cahuzac, M. Gross, E. Capocasa, M. Barsuglia, R. Flaminio, P. La Penna “Frequency-dependent reflection of a misaligned beam by a Fabry–Pérot cavity” Appl. Phys. Lett. 123, 044101 (2023).

  • F. Acernese, et al. “Frequency-Dependent Squeezed Vacuum Source for the Advanced Virgo Gravitational-Wave Detector” Phys. Rev. Lett. 131, 041403

2022#

  • C. Nguyen, E. Bréelle, M. Barsuglia, E. Capocasa, M. De Laurentis, V. Sequino, and F. Sorrentino “Thermally controlled optical resonator for vacuum squeezed states separation.” Appl. Opt. 61, 5226-5236 (2022)

  • Y.Zhao, E. Capocasa, M. Eisenmann et al. “Improving the stability of frequency-dependent squeezing with bichromatic control of filter cavity length, alignment, and incident beam pointing” Phys. Rev. D 105, 082003

  • N. Aritomi, Y. Zhao, E. Capocasa et al. “Demonstration of length control for a filter cavity with coherent control sidebands” Phys. Rev. D 106, 102003 (2022)

2021#

  • C. Nguyen, M. Bawaj, V. Sequino, M. Barsuglia et al. “Automated source of squeezed vacuum states driven by finite state machine based software” Rev. Sci. Instrum. 92, 054504 (2021)

2020#

  • Y. Zhao, N. Aritomi, E. Capocasa et al. “Frequency-dependent squeezed vacuum source for broadband quantum noise reduction in advanced gravitational-wave detectors” Phys. Rev. Lett. 124, 171101

  • Naoki Aritomi, Matteo Leonardi, Eleonora Capocasa, Yuhang Zhao, and Raffaele Flaminio. “Control of a filter cavity with coherent control sidebands” Phys. Rev. D 102, 042003

2018#

  • E. Capocasa, Y. Guo, M. Eisenmann, Y. Zhao et al. “Measurement of optical losses in a high-finesse 300 m filter cavity for broadband quantum noise reduction in gravitational-wave detectors” Phys. Rev. D 98, 022010

  • D. Fiorucci, J. Harms, M. Barsuglia, I. Fiori, F. Paoletti “Impact of infrasound atmospheric noise on gravity detectors used for astrophysical and geophysical applications” Phys. Rev. D 97, 062003

2017#

  • C. Buy, E. Genin, M. Barsuglia, R. Gouaty, M. Tacca, “Design of a high-magnification and low-aberration compact catadioptric telescope for the Advanced Virgo gravitational-wave interferometric detector” Class. Quantum Grav. 34 095011

2016#

  • E. Capocasa, M. Barsuglia, J. Degallaix, et al. “Estimation of losses in a 300 m filter cavity and quantum noise reduction in the KAGRA gravitational-wave detector” Phys. Rev. D 105, 082003

  • M. Tacca, F. Sorrentino, C. Buy, M. Laporte, G. Pillant, E. Genin, P. La Penna, M. Barsuglia. “Tuning of a high magnification compact parabolic telescope for centimeter-scale laser beams” Appl. Opt. 55, 1275-1283 (2016)

2015#

  • A. Allocca, A. Gatto, M. Tacca, R. A. Day, M. Barsuglia, G. Pillant, C. Buy, and G. Vajente “Higher-order Laguerre-Gauss interferometry for gravitational-wave detectors with in situ mirror defects compensation” Phys. Rev. D 92, 102002

2014#

  • A. Gatto, M. Tacca, F. Kéfélian, C. Buy, and M. Barsuglia “Fabry-Pérot-Michelson interferometer using higher-order Laguerre-Gauss modes” Phys. Rev. D 90, 122011

2010#

  • M. Granata, C. Buy, R. Ward, and M. Barsuglia “Higher-order Laguerre-Gauss mode generation and interferometry for gravitational wave detectors” Phys. Rev. Lett. 105, 231102