Bayesian optimization of non-classical optomechanical correlations

被引:0
作者
Pitchford, Alexander [1 ,2 ,3 ]
Rakhubovsky, Andrey A. [4 ]
Mukherjee, Rick [1 ]
Moore, Darren W. [4 ]
Sauvage, Frederic [1 ]
Burgarth, Daniel [3 ]
Filip, Radim [4 ]
Mintert, Florian [1 ]
机构
[1] Imperial Coll London, Phys Dept, Blackett Lab, Prince Consort Rd, London SW7 2BW, England
[2] Aberystwyth Univ, Dept Math, Penglais Campus, Aberystwyth SY23 3BZ, Wales
[3] Macquarie Univ, Ctr Engn Quantum Syst, Dept Phys & Astron, Sydney, NSW 2109, Australia
[4] Palacky Univ, Dept Opt, 17 Listopadu 12, Olomouc 77146, Czech Republic
来源
QUANTUM SCIENCE AND TECHNOLOGY | 2024年 / 9卷 / 04期
基金
英国工程与自然科学研究理事会;
关键词
optomechanics; quantum control; entanglement production; Bayesian optimization; LEARNING CONTROL; MECHANICAL MOTION; QUANTUM CONTROL; ENTANGLEMENT; STATE; SYSTEMS; NANOPARTICLE; GENERATION; ALGORITHM; RADIATION;
D O I
10.1088/2058-9565/ad7169
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Nonclassical correlations provide a resource for many applications in quantum technology as well as providing strong evidence that a system is indeed operating in the quantum regime. Optomechanical systems can be arranged to generate nonclassical correlations (such as quantum entanglement) between the mechanical mode and a mode of travelling light. Here we propose automated optimization of the production of quantum correlations in such a system, beyond what can be achieved through analytical methods, by applying Bayesian optimization to the control parameters. A two-mode optomechanical squeezing experiment is simulated using a detailed theoretical model of the system and the measurable outputs fed to the Bayesian optimization process. This then modifies the controllable parameters in order to maximize the non-classical two-mode squeezing and its detection, independently of the inner workings of the model. We focus on a levitated nano-sphere system, but the techniques described are broadly applicable in optomechanical experiments, and also more widely, especially where no detailed theoretical treatment is available. We find that in the experimentally relevant thermal regimes, the ability to vary and optimize a broad array of control parameters provides access to large values of two-mode squeezing that would otherwise be difficult or intractable to discover via analytical or trial and error methods. In particular we observe that modulation of the driving frequency around the resonant sideband allows for stronger nonclassical correlations. We also observe that our optimization approach finds parameters that allow significant squeezing in the high temperature regime. This extends the range of experimental setups in which non-classical correlations could be generated beyond the region of high quantum cooperativity.
引用
收藏
页数:26
相关论文
共 114 条
  • [1] Generation of time-domain-multiplexed two-dimensional cluster state
    Asavanant, Warit
    Shiozawa, Yu
    Yokoyama, Shota
    Charoensombutamon, Baramee
    Emura, Hiroki
    Alexander, Rafael N.
    Takeda, Shuntaro
    Yoshikawa, Jun-ichi
    Menicucci, Nicolas C.
    Yonezawa, Hidehiro
    Furusawa, Akira
    [J]. SCIENCE, 2019, 366 (6463) : 373 - +
  • [2] Cavity optomechanics
    Aspelmeyer, Markus
    Kippenberg, Tobias J.
    Marquardt, Florian
    [J]. REVIEWS OF MODERN PHYSICS, 2014, 86 (04) : 1391 - 1452
  • [3] Stationary entangled radiation from micromechanical motion
    Barzanjeh, S.
    Redchenko, E. S.
    Peruzzo, M.
    Wulf, M.
    Lewis, D. P.
    Arnold, G.
    Fink, J. M.
    [J]. NATURE, 2019, 570 (7762) : 480 - +
  • [4] Entangled macroscopic quantum states in two superconducting qubits
    Berkley, AJ
    Xu, H
    Ramos, RC
    Gubrud, MA
    Strauch, FW
    Johnson, PR
    Anderson, JR
    Dragt, AJ
    Lobb, CJ
    Wellstood, FC
    [J]. SCIENCE, 2003, 300 (5625) : 1548 - 1550
  • [5] Bowen WP, 2016, QUANTUM OPTOMECHANICS, P1
  • [6] Entanglement and deterministic quantum computing with one qubit
    Boyer, Michel
    Brodutch, Aharon
    Mor, Tal
    [J]. PHYSICAL REVIEW A, 2017, 95 (02)
  • [7] BRAGINSKY VB, 1970, SOV PHYS JETP-USSR, V31, P829
  • [8] Quantum-enhanced measurements without entanglement
    Braun, Daniel
    Adesso, Gerardo
    Benatti, Fabio
    Floreanini, Roberto
    Marzolino, Ugo
    Mitchell, Morgan W.
    Pirandola, Stefano
    [J]. REVIEWS OF MODERN PHYSICS, 2018, 90 (03)
  • [9] Brochu E, 2010, Arxiv, DOI [arXiv:1012.2599, DOI 10.48550/ARXIV.1012.2599]
  • [10] A LIMITED MEMORY ALGORITHM FOR BOUND CONSTRAINED OPTIMIZATION
    BYRD, RH
    LU, PH
    NOCEDAL, J
    ZHU, CY
    [J]. SIAM JOURNAL ON SCIENTIFIC COMPUTING, 1995, 16 (05) : 1190 - 1208