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A millisecond quantum memory for scalable quantum networks
Journal article   Open access   Peer reviewed

A millisecond quantum memory for scalable quantum networks

Bo Zhao, Yu-Ao Chen, Xiao-Hui Bao, Thorsten Strassel, Chih-Sung Chuu, Xian-Min Jin, Jörg Schmiedmayer, Zhen-Sheng Yuan, Shuai Chen and Jian-Wei Pan
Nature Physics, Vol.5(2), pp.95-99
02/2009

Abstract

Scalable quantum-information processing requires the capability of storing quantum states. In particular, a long-lived storable and retrievable quantum memory for single excitations is of key importance to long-distance quantum communication with atomic ensembles and linear optics. Although atomic memories for classical light and continuous variables have been demonstrated with millisecond storage time, lifetimes of only around 10μs have been reported for quantum memories storing single excitations. Here we present an experimental investigation into extending the storage time of quantum memory for single excitations. We identify and isolate distinct mechanisms responsible for the decoherence of spin waves in atomic-ensemble-based quantum memories. By exploiting magnetic-field-insensitive states-so-called clock states-and generating a long-wavelength spin wave to suppress dephasing, we succeed in extending the storage time of the quantum memory to 1ms. Our result represents an important advance towards long-distance quantum communication and should provide a realistic approach to large-scale quantum information-processing.
url
https://doi.org/10.1038/nphys1153View
Published (Version of record) Open

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