Properties of collective Rabi oscillations with two Rydberg atoms

Dan Dan Ma, Ke Ye Zhang, Jing Qian

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5 Scopus citations

Abstract

Motivated by experimental advances that the collective excitation of two Rydberg atoms was observed, we provide an elaborate theoretical study for the dynamical behavior of two-atom Rabi oscillations. In the large-intermediate-detuning case, the two-photon Rabi oscillation is found to be significantly affected by the strength of the interatomic van der Waals interaction. With a careful comparison of the exact numbers and values of the oscillation frequency, we propose a new way to determine the strength of excitation blockade, agreeing well with the previous universal criterion for full, partial, and no blockade regions. In the small-intermediate-detuning case, we find a blockade-like effect, but the collective enhancement factor is smaller than √2 due to the quantum interference of double optical transitions involving the intermediate state. Moreover, a fast two-photon Rabi oscillation in ns timescale is manifested by employing intense lasers with an intensity of ∼MW/cm2, offering a possibility of ultrafast control of quantum dynamics with Rydberg atoms.

Original languageEnglish
Article number013202
JournalChinese Physics B
Volume28
Issue number1
DOIs
StatePublished - 2019

Keywords

  • Rabi oscillation
  • Rydberg atoms
  • collective excitation
  • excitation blockade

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