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Quantum to Classical Walk Transitions Tuned by Spontaneous Emissions

POSTER

Abstract

We have recently realized a quantum walk in momentum space with a rubidium spinor BoseEinstein condensate by applying a periodic kicking potential as a walk operator and a resonant microwave pulse as a coin toss operator. The generated quantum walks appear to be stable for up to ten steps and then quickly transit to classical walks due to spontaneous emissions induced by laser beams of the walk operator. We investigate these quantum to classical walk transitions by introducing well-controlled spontaneous emissions with an external light source during quantum walks. Our findings demonstrate a scheme to control the robustness of the quantum walks and can also be applied to other cold atom experiments involving spontaneous emissions.

Publication: Quantum to Classical Walk Transitions Tuned by Spontaneous Emissions

Presenters

  • Jerry H Clark

    Oklahoma State University-Stillwater

Authors

  • Jerry H Clark

    Oklahoma State University-Stillwater

  • Yingmei Liu

    Oklahoma State University, Oklahoma State University-Stillwater

  • Gil Summy

    Oklahoma State University

  • Sandro Wimberger

    Dipartimento di Scienze Matematiche

  • Caspar Groiseau

    University of Auckland

  • Zachary N Shaw

    Oklahoma State University-Stillwater, Oklahoma State University

  • Siamak Dadras

    University of Rochester

  • Cosmo Binegar

    Oklahoma State University