论文标题

使用长寿命贵族旋转的光学量子记忆的最佳策略

Optimal Strategies for Optical Quantum Memories Using Long-Lived Noble-Gas Spins

论文作者

Katz, Or, Reches, Eran, Shaham, Roy, Poem, Eilon, Gorshkov, Alexey V., Firstenberg, Ofer

论文摘要

贵重气体的核自旋表现出异常长的连贯性时间,并且可以作为量子信息的长寿命存储介质。我们分析并比较了将光的量子状态映射到贵重气体的集体自旋状态上的两种机制的性能。第一种机制利用了与亚稳态贵族原子的电子自旋状态进行碰撞交换,而第二个机制则依赖于与地面碱金属原子的自旋交换碰撞。我们描述了使用紧凑的模型和研究策略优化存储器存储效率的光学量子内存的操作。通过数值模拟,我们确定了用于存储具有不同信号带宽和电子自旋松弛速率的光学信号的最佳序列。这项工作突出了两种方法在非晶体条件下长期使用量子量子记忆的两种方法之间的定性差异,并概述了预期它们有效的机制。

Nuclear spins of noble gases exhibit exceptionally long coherence times and can potentially serve as a long-lived storage medium for quantum information. We analyze and compare the performance of two mechanisms for mapping the quantum state of light onto the collective spin state of noble gases. The first mechanism utilizes collisional exchange with the electronic spin state of metastable noble-gas atoms, while the second relies on spin-exchange collisions with ground-state alkali-metal atoms. We describe the operation of an optical quantum memory relying on these two mechanisms using a compact model and study strategies that optimize the memory storage efficiency. Through numerical simulations, we identify optimal sequences for storing optical signals with different signal bandwidths and electronic spin relaxation rates. This work highlights the qualitative difference between the two approaches for using noble gases as long-lived quantum memories at non-cryogenic conditions and outlines the regimes in which they are expected to be efficient.

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