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  5. Towards highly multimode optical quantum memory for quantum repeaters

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Article
English
2016

Towards highly multimode optical quantum memory for quantum repeaters

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English
2016
Physical review. A/Physical review, A
Vol 93 (3)
DOI: 10.1103/physreva.93.032327

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Nicolas Gisin
Nicolas Gisin

University of Geneva

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Pierre Jobez
Nuala Timoney
Cyril Laplane
+5 more

Abstract

Long-distance quantum communication through optical fibers is currently limited to a few hundreds of kilometres due to fiber losses. Quantum repeaters could extend this limit to continental distances. Most approaches to quantum repeaters require highly multimode quantum memories in order to reach high communication rates. The atomic frequency comb memory scheme can in principle achieve high temporal multimode storage, without sacrificing memory efficiency. However, previous demonstrations have been hampered by the difficulty of creating high-resolution atomic combs, which reduces the efficiency for multimode storage. In this article we present a comb preparation method that allows one to increase the multimode capacity for a fixed memory bandwidth. We apply the method to a $^{151}$Eu$^{3+}$-doped Y$_2$SiO$_5$ crystal, in which we demonstrate storage of 100 modes for 51 $\mu$s using the AFC echo scheme (a delay-line memory), and storage of 50 modes for 0.541 ms using the AFC spin-wave memory (an on-demand memory). We also briefly discuss the ultimate multimode limit imposed by the optical decoherence rate, for a fixed memory bandwidth.

How to cite this publication

Pierre Jobez, Nuala Timoney, Cyril Laplane, Jean Etesse, Alban Ferrier, Philippe Goldner, Nicolas Gisin, Mikael Afzelius (2016). Towards highly multimode optical quantum memory for quantum repeaters. Physical review. A/Physical review, A, 93(3), DOI: 10.1103/physreva.93.032327.

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Publication Details

Type

Article

Year

2016

Authors

8

Datasets

0

Total Files

0

Language

English

Journal

Physical review. A/Physical review, A

DOI

10.1103/physreva.93.032327

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