Journal Article FZJ-2026-02304

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Analyzing the collective emission of a Rydberg-blockaded single-photon source based on an ensemble of thermal atoms

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2024
Inst. Woodbury, NY

Physical review / A 109(1), 013705 () [10.1103/PhysRevA.109.013705]

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Abstract: An ensemble of rubidium atoms can be excited with lasers such that it evolves into an entangled state with justone collective excitation within the Rydberg-blockade radius. The decay of this state leads to the emission of asingle antibunched photon. For a hot vapor of rubidium atoms in a microcell, we numerically study the feasibilityof such a single-photon source under different experimental conditions like the atomic density distribution andthe choice of electronic states addressed by the lasers. For the excitation process with three rectangular laserspulses, we simulate the coherent dynamics of the system in a truncated Hilbert space. We investigate the radiativebehavior of the moving rubidium atoms and optimize the laser pulse sequence accordingly. We find that thecollective decay of the single excitation leads to a fast and directed photon emission and further that a pulsesequence similar to a spin echo increases the directionality of the photon. Finally, we analyze the residual doubleexcitations and find that they do not exhibit these collective decay properties and play only a minor deleteriousrole.

Classification:

Contributing Institute(s):
  1. Quantum Control (PGI-8)
Research Program(s):
  1. 5221 - Advanced Solid-State Qubits and Qubit Systems (POF4-522) (POF4-522)
  2. BMBF 13N15891 - FermiQP - Fermion-Quantenprozessor (BMBF-13N15891) (BMBF-13N15891)
  3. AIDAS - Joint Virtual Laboratory for AI, Data Analytics and Scalable Simulation (aidas_20200731) (aidas_20200731)

Database coverage:
Medline ; Clarivate Analytics Master Journal List ; Current Contents - Electronics and Telecommunications Collection ; Current Contents - Physical, Chemical and Earth Sciences ; Essential Science Indicators ; IF < 5 ; JCR ; SCOPUS ; Science Citation Index Expanded ; Web of Science Core Collection
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Institutssammlungen > PGI > PGI-8
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 Datensatz erzeugt am 2026-04-23, letzte Änderung am 2026-06-30


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