Hong-Ou-Mandel Interference between Two Deterministic Collective Excitations in an Atomic Ensemble

We demonstrate deterministic generation of two distinct collective excitations in one atomic ensemble, and we realize the Hong-Ou-Mandel interference between them. Using Rydberg blockade we create single collective excitations in two different Zeeman levels, and we use stimulated Raman transitions t...

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Veröffentlicht in:Physical review letters 2016-10, Vol.117 (18), p.180501-180501, Article 180501
Hauptverfasser: Li, Jun, Zhou, Ming-Ti, Jing, Bo, Wang, Xu-Jie, Yang, Sheng-Jun, Jiang, Xiao, Mølmer, Klaus, Bao, Xiao-Hui, Pan, Jian-Wei
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Sprache:eng
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Zusammenfassung:We demonstrate deterministic generation of two distinct collective excitations in one atomic ensemble, and we realize the Hong-Ou-Mandel interference between them. Using Rydberg blockade we create single collective excitations in two different Zeeman levels, and we use stimulated Raman transitions to perform a beam-splitter operation between the excited atomic modes. By converting the atomic excitations into photons, the two-excitation interference is measured by photon coincidence detection with a visibility of 0.89(6). The Hong-Ou-Mandel interference witnesses an entangled NOON state of the collective atomic excitations, and we demonstrate its two times enhanced sensitivity to a magnetic field compared with a single excitation. Our work implements a minimal instance of boson sampling and paves the way for further multimode and multiexcitation studies with collective excitations of atomic ensembles.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.117.180501