Interfacing single mm-wave and optical photons using Rydberg atoms: Part II.
ORAL
Abstract
Continuing Part I of this talk, I will present recent results from our hybrid quantum system for entangling optical and mm-wave photons. We will present data on Rydberg Electromagnetically Induced Transparency (EIT) inside our hybrid cavity and Autler-Towns splitting of the EIT due presence of the mm-wave mode of the cavity. Using auxiliary modes of the mm-wave cavity, we implement flexible AC Stark tuning and polarizability control of Rydberg states. We will conclude by describing our efforts towards single-photon resolution in the strong coupling regime, high cooperativity cavity QED in the Rydberg manifold, and progress towards high-bandwidth mm-wave to optical transduction.
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Publication: Suleymanzade, A., Anferov, A., Stone, M., Naik, R. K., Oriani, A., Simon, J., & Schuster, D. (2020). A tunable high-Q millimeter wave cavity for hybrid circuit and cavity QED experiments. Applied Physics Letters, 116(10), 104001.<br>Chicago
Presenters
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Aziza Suleymanzade
University of Chicago
Authors
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Aziza Suleymanzade
University of Chicago
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Mark J Stone
University of Chicago
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Aishwarya Kumar
University of Chicago
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Lavanya Taneja
University of Chicago
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David I Schuster
University of Chicago
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Jonathan Simon
University of Chicago