Characterization and evasion of backscattered light in the squeezed-light enhanced gravitational wave interferometer GEO 600

被引:0
|
作者
Bergamin F. [1 ]
Lough J. [1 ]
Schreiber E. [1 ]
Grote H. [2 ]
Mehmet M. [1 ]
Vahlbruch H. [1 ]
Affeldt C. [1 ]
Andric T. [1 ]
Bisht A. [1 ]
Brinkmann M. [1 ]
Kringel V. [1 ]
Lück H. [1 ]
Mukund N. [1 ]
Nadji S. [1 ]
Sorazu B. [3 ]
Strain K. [3 ]
Weinert M. [1 ]
Danzmann K. [1 ]
机构
[1] Max-Planck-Institut für Gravitationsphysik (Albert-Einstein-Institut), Leibniz Universität Hannover, Callinstr. 38, Hannover
[2] School of Physics and Astronomy, Cardiff University, The Parade
[3] SUPA, University of Glasgow, Glasgow
基金
英国科学技术设施理事会;
关键词
Funding; Max-Planck-Gesellschaft; Gottfried Wilhelm Leibniz Universität Hannover; Deutsche Forschungsgemeinschaft (EXC-2123; QuantumFrontiers; -; 390837967; SFB/Transregio; 7); Bundesministerium für Bildung und Forschung; University of Glasgow; Science and Technology Facilities Council (ST/L000946/1);
D O I
10.1364/OE.497555
中图分类号
学科分类号
摘要
Squeezed light is injected into the dark port of gravitational wave interferometers, in order to reduce the quantum noise. A fraction of the interferometer output light can reach the OPO due to sub-optimal isolation of the squeezing injection path. This backscattered light interacts with squeezed light generation process, introducing additional measurement noise. We present a theoretical description of the noise coupling mechanism and we prove the model with experimental results. We propose a control scheme to achieve a de-amplification of the backscattered light inside the OPO with a consequent reduction of the noise caused by it. The scheme was implemented at the GEO 600 detector and has proven to be crucial in maintaining a good level of quantum noise reduction of the interferometer for high parametric gain of the OPO. In particular, the mitigation of the backscattered light noise helped in reaching 6 dB of quantum noise reduction [Phys. Rev. Lett. 126, 041102 (2021)]. We show that the impact of backscattered-light-induced noise on the squeezing performance is phenomenologically equivalent to increased phase noise of the squeezing angle control. The results discussed in this paper provide a way for a more accurate estimation of the residual phase noise of the squeezed light field. Finally, the knowledge of the backscattered light noise coupling mechanism is a useful tool to inform the design of the squeezing injection path in terms of path stability and optical isolation. © 2023 OSA - The Optical Society. All rights reserved.
引用
收藏
页码:38443 / 38456
页数:13
相关论文
共 50 条
  • [1] Status of the GEO 600 squeezed-light laser
    Khalaidovski, Alexander
    Vahlbruch, Henning
    Lastzka, Nico
    Graef, Christian
    Lueck, Harald
    Danzmann, Karsten
    Grote, Hartmut
    Schnabel, Roman
    9TH EDOARDO AMALDI CONFERENCE ON GRAVITATIONAL WAVES (AMALDI 9) AND THE 2011 NUMERICAL RELATIVITY - DATA ANALYSIS MEETING (NRDA 2011), 2012, 363
  • [2] SQUEEZED-LIGHT ENHANCED POLARIZATION INTERFEROMETER
    GRANGIER, P
    SLUSHER, RE
    YURKE, B
    LAPORTA, A
    PHYSICAL REVIEW LETTERS, 1987, 59 (19) : 2153 - 2156
  • [3] CORRELATION INTERFEROMETER FOR SQUEEZED-LIGHT
    BOHMER, B
    LEONHARDT, U
    OPTICS COMMUNICATIONS, 1995, 118 (3-4) : 181 - 185
  • [4] Fundamental quantum interferometry bound for the squeezed-light-enhanced gravitational wave detector GEO 600
    Demkowicz-Dobrzanski, Rafal
    Banaszek, Konrad
    Schnabel, Roman
    PHYSICAL REVIEW A, 2013, 88 (04):
  • [5] High power and ultra-low-noise photodetector for squeezed-light enhanced gravitational wave detectors
    Grote, Hartmut
    Weinert, Michael
    Adhikari, Rana X.
    Affeldt, Christoph
    Kringel, Volker
    Leong, Jonathan
    Lough, James
    Lueck, Harald
    Schreiber, Emil
    Strain, Kenneth A.
    Vahlbruch, Henning
    Wittel, Holger
    OPTICS EXPRESS, 2016, 24 (18): : 20107 - 20118
  • [6] The GEO 600 squeezed light source
    Vahlbruch, Henning
    Khalaidovski, Alexander
    Lastzka, Nico
    Graef, Christian
    Danzmann, Karsten
    Schnabel, Roman
    CLASSICAL AND QUANTUM GRAVITY, 2010, 27 (08)
  • [7] Quantum Noise Reduction in the LIGO Gravitational Wave Interferometer with Squeezed States of Light
    Barsotti, Lisa
    2014 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO), 2014,
  • [8] Squeezed Light for Gravitational Wave Detection
    Schnabel, Roman
    2010 CONFERENCE ON LASERS AND ELECTRO-OPTICS (CLEO) AND QUANTUM ELECTRONICS AND LASER SCIENCE CONFERENCE (QELS), 2010,
  • [9] Squeezed light for gravitational wave detectors
    Schnabel, Roman
    Quantum Information with Continous Variables of Atoms and Light, 2007, : 345 - 366
  • [10] Squeezed-Light Enhancement and Backaction Evasion in a High Sensitivity Optically Pumped Magnetometer
    Troullinou, C.
    Jimenez-Martinez, R.
    Kong, J.
    Lucivero, V. G.
    Mitchell, M. W.
    PHYSICAL REVIEW LETTERS, 2021, 127 (09)