Collective quantum beats from distant multilevel emitters

Ahreum Lee, Hyok Sang Han, Fredrik K. Fatemi, S. L. Rolston, and Kanu Sinha
Phys. Rev. A 107, 013701 – Published 3 January 2023

Abstract

We analyze the dynamics of quantum beats in a system of two V-type three-level atoms coupled to a waveguide. We show that quantum beats can be collectively enhanced or suppressed, akin to Dicke super- and subradiance, depending on the interatomic separation and the initial correlations between the atoms. In particular, the interference properties of the collective beats are determined by the distance between the atoms modulo the beat wavelength. We study the collective atomic and field dynamics, illustrating a crossover from a Markovian to a non-Markovian regime as the atomic separation becomes sufficiently large to bring memory effects of the electromagnetic environment into consideration. In such a non-Markovian regime, collective quantum beats can be enhanced beyond the Markovian limit as a result of retardation effects. Our results demonstrate the rich interplay between multilevel and multiatom quantum interference effects arising in a system of distant quantum emitters.

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  • Received 15 July 2022
  • Accepted 16 December 2022

DOI:https://doi.org/10.1103/PhysRevA.107.013701

©2023 American Physical Society

Physics Subject Headings (PhySH)

Atomic, Molecular & Optical

Authors & Affiliations

Ahreum Lee1,*, Hyok Sang Han1, Fredrik K. Fatemi2,3, S. L. Rolston1,3, and Kanu Sinha4

  • 1Joint Quantum Institute, University of Maryland and the National Institute of Standards and Technology, College Park, Maryland 20742, USA
  • 2DEVCOM Army Research Laboratory, Adelphi, Maryland 20783, USA
  • 3Quantum Technology Center, University of Maryland, College Park, Maryland 20742, USA
  • 4School of Electrical, Computer and Energy Engineering, Arizona State University, Tempe, Arizona 85287, USA

  • *alee1206@umd.edu

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Issue

Vol. 107, Iss. 1 — January 2023

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