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Thermalization of a system of nearly harmonic ladders

POSTER

Abstract

The study of the dynamics of ultracold Rydberg atoms in a magneto-optical trap offers insight into the thermalization of closed, isolated quantum systems. We excite the atoms to the middle of the n∽34 manifold in a small electric field. These Stark levels form a nearly harmonic ladder so that energy spreads out from the center of the manifold via dipole-dipole interactions among the atoms. We use the notion of dynamical typicality to numerically predict the thermalized state and compare this to the observed equilibrium energy distribution at various Rydberg atom densities. Our results reveal that, especially at low densities, our system fails to thermalize.

Presenters

  • Thomas J Carroll

    Ursinus College

Authors

  • Thomas J Carroll

    Ursinus College

  • Sarah E Spielman

    Bryn Mawr College

  • Michael W Noel

    Bryn Mawr College

  • Aidan D Kirk

    Ursinus College

  • Philip A Conte

    Ursinus College

  • Nick A Chlanda

    Ursinus College

  • Juniper J Bauroth-Sherman

    Ursinus College

  • Karleigh M Bath

    Bryn Mawr College

  • Annick C van Blerkom

    Bryn Mawr College

  • Maja Teofilovska

    Bryn Mawr College

  • Sage M Thomas

    Bryn Mawr College

  • John A Keim

    Ursinus College

  • Isabel Beatriz Martinez-Robles

    Ursinus College