Cavity-mediated Interaction in a Bragg Interferometer: Hamiltonian Engineering and Mössbauer-like Suppression of Doppler Dephasing

POSTER

Abstract


Laser-cooled atoms interacting via photon-mediated interactions are versatile platforms for quantum simulation and sensing. By harnessing momentum states as an effective qubit degree of freedom in an optical cavity quantum simulator, we realize an all-to-all interaction with arbitrary quadratic Hamiltonian or effectively a tunable collective Heisenberg XYZ model. With this capability, we realize for the first time the two-axis counter-twisting model, an iconic XYZ collective spin model that can generate spin-squeezed states that saturate the Heisenberg limit. An experimentally observable many-body energy gap also emerges, effectively binding interferometer matter-wave packets together to suppress Doppler dephasing with analogies to Mössbauer spectroscopy. The versatility of our platform to include more momentum states, combined with the flexibility of the simulated Hamiltonians by adding cavity tones opens rich opportunities for quantum information processing and quantum sensing using photon-mediated interactions with synthetic momentum states.

*This material is based upon work supported by the US Department of Energy, Office of Science, National Quantum Information Science Research Centers, Quantum Systems Accelerator. We acknowledge additional funding support from the National Science Foundation under Grant Nos. 2317149 (Physics Frontier Center) and OMA-2016244 (Quantum Leap Challenge Institutes), and the National Institute of Standards and Technology.

Publication: [1]arXiv:2304.01411
[2]Young, D.J., Chu, A., Song, E.Y. et al. Observing dynamical phases of BCS superconductors in a cavity QED simulator. Nature 625, 679–684 (2024)

Presenters

  • Chitose Maruko

    • University of Colorado, Boulder

Authors

  • Chitose Maruko

    • University of Colorado, Boulder
  • Chengyi Luo

    • University of Colorado, Boulder
  • Haoqing Zhang

    • University of Colorado, Boulder
  • Anjun Chu

    • JILA
    • CU Boulder, JILA
  • Vanessa P Koh

    • University of Clorado, Boulder
    • University of Colorado, Boulder
  • John D Wilson

    • University of Colorado, Boulder
  • Murray J Holland

    • Uuniversity of Colorado Boulder
    • University of Colorado Boulder
    • University of Colorado, Boulder
  • Ana Maria Rey

    • UC Boulder/JILA
    • University of Colorado, Boulder
    • JILA CU Boulder
    • CU Boulder, JILA
  • James K Thompson

    • JILA, CU Boulder
    • JILA, NIST and University of Colorado Boulder
    • University of Colorado, Boulder