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关于用于近乎完美存储的时间扩展量子存储器的修正光子回波中集体原子相位控制的理解。

Understanding of Collective Atom Phase Control in Modified Photon Echoes for a Near-Perfect Storage Time-Extended Quantum Memory.

作者信息

Ullah Rahmat, Ham Byoung S

机构信息

Center for Photon Information Processing, and School of Electrical Engineering and Computer Science, Gwangju Institute of Science and Technology, Gwangju 61005, Korea.

Quantum Optics Laboratory, Department of Physics, COMSATS University, Islamabad 44000, Pakistan.

出版信息

Entropy (Basel). 2020 Aug 15;22(8):900. doi: 10.3390/e22080900.

Abstract

A near-perfect storage time-extended photon echo-based quantum memory protocol has been analyzed by solving the Maxwell-Bloch equations for a backward scheme in a three-level system. The backward photon echo scheme is combined with a controlled coherence conversion process via controlled Rabi flopping to a third state, where the control Rabi flopping collectively shifts the phase of the ensemble coherence. The propagation direction of photon echoes is coherently determined by the phase-matching condition between the data (quantum) and the control (classical) pulses. Herein, we discuss the classical controllability of a quantum state for both phase and propagation direction by manipulating the control pulses in both single and double rephasing photon echo schemes of a three-level system. Compared with the well-understood uses of two-level photon echoes, the Maxwell-Bloch equations for a three-level system have a critical limitation regarding the phase change when interacting with an arbitrary control pulse area.

摘要

通过求解三能级系统中反向方案的麦克斯韦 - 布洛赫方程,分析了一种近乎完美的基于存储时间扩展光子回波的量子存储协议。反向光子回波方案与通过受控拉比振荡到第三态的受控相干转换过程相结合,其中控制拉比振荡共同改变系综相干的相位。光子回波的传播方向由数据(量子)脉冲和控制(经典)脉冲之间的相位匹配条件相干地确定。在此,我们讨论了在三能级系统的单重和双重重相光子回波方案中,通过操纵控制脉冲对量子态的相位和传播方向进行经典可控性的问题。与对二能级光子回波的充分理解的应用相比,三能级系统的麦克斯韦 - 布洛赫方程在与任意控制脉冲面积相互作用时,在相位变化方面存在关键限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/124d/7517526/a997d1d3a4f3/entropy-22-00900-g001.jpg

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