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在用于延长光子存储时间的稀释介质中出现的脉冲脱架矛盾现象。

A contradictory phenomenon of deshelving pulses in a dilute medium used for lengthened photon storage time.

作者信息

Ham Byoung S

机构信息

School of Electrical Engineering, and Center for Photon Information Processing, Inha University, 253 Yonghyun-dong, Nam-gu, Incheon 402-751, S. Korea.

出版信息

Opt Express. 2010 Aug 16;18(17):17749-55. doi: 10.1364/OE.18.017749.

Abstract

Lengthening of photon storage time has been an important issue in quantum memories for long distance quantum communications utilizing quantum repeaters. Atom population transfer into an auxiliary spin state has been adapted to increase photon storage time of photon echoes. In this population transfer process phase shift to the collective atoms is inevitable, where the phase recovery condition must be multiple of 2pi to satisfy rephasing mechanism. Recent adaptation of the population transfer method to atomic frequency comb (AFC) echoes [Afzelius et al., Phys. Rev. Lett. 104, 040503 (2010)], where the population transfer method is originated in a controlled reversible inhomogeneous broadening technique [Moiseev and Kroll, Phys. Rev. Lett. 87, 173601 (2001)], however, shows contradictory phenomenon violating the phase recovery condition. This contradiction in AFC is reviewed as a general case of optical locking applied to a dilute medium for an optical depth-dependent coherence leakage resulting in partial retrieval efficiency.

摘要

对于利用量子中继器进行长距离量子通信的量子存储器而言,延长光子存储时间一直是一个重要问题。原子布居转移到辅助自旋态已被用于增加光子回波的光子存储时间。在这个布居转移过程中,集体原子不可避免地会出现相移,其中相位恢复条件必须是2π的倍数才能满足重相机制。最近,布居转移方法被应用于原子频率梳(AFC)回波[阿夫泽利乌斯等人,《物理评论快报》104, 040503 (2010)],其中布居转移方法起源于一种可控可逆非均匀展宽技术[莫伊谢耶夫和克罗尔,《物理评论快报》87, 173601 (2001)],然而,却出现了违反相位恢复条件的矛盾现象。AFC中的这种矛盾被视为应用于稀薄介质的光学锁定的一般情况,这种光学锁定会导致与光学深度相关的相干泄漏,从而产生部分检索效率。

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