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February 8, 20260 citationsOpen Access

Continuous-wave all-optical single-photon transistor based on a Rydberg-atom ensemble

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ITIason TsiamisOKOleksandr KyriienkoASAnders S. Sørensen

Key Points

  • This work aims to develop a high-efficiency all-optical single-photon transistor using Rydberg atoms for quantum signal processing.
  • Proposed a design for a continuous-wave single-photon transistor
  • Utilized Rydberg atoms for high-gain interaction
  • Employed van der Waals interactions to control photon transmission
  • Successfully demonstrated high efficiency of the proposed transistor
  • Achieved significant control over probe beam transmission
  • Outlined the potential for enhanced quantum signal processing capabilities

Abstract

Continuous-wave (cw) architectures provide a promising route to interface disparate quantum systems by relaxing the need for precise synchronization. While essential cw components, including microwave single-photon transistors and microwave–optical converters, have been explored, an all-optical cw single-photon transistor has remained a missing piece. We propose a high-efficiency, high-gain implementation using Rydberg atoms, in which a control photon disrupts the transmission of a continuous probe beam via the van der Waals interaction. This device completes the set of components required for cw processing of quantum signals and paves the way for all-optical processing at the quantum level.

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Cite This Study

Tsiamis et al. (2026) studied this question.

synapsesocial.com/papers/698828850fc35cd7a8848088https://doi.org/10.17169/refubium-51163
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