论文标题

连续保护集体状态免受不均匀性的影响

Continuous protection of a collective state from inhomogeneous dephasing

论文作者

Finkelstein, Ran, Lahad, Ohr, Cohen, Itsik, Davidson, Omri, Kiriati, Shai, Poem, Eilon, Firstenberg, Ofer

论文摘要

我们介绍并展示了一种消除集体量子状态的不均匀性的计划。该方案采用了抗谐声领域,这些领域将辅助传感器状态不断地打扮集体状态,该状态具有增强的和相反的敏感性。我们得出了使用一个或两个敷料场时,穿着状态完全保护的最佳条件。后者提供了更好的保护,绕开量子相旋转,并抑制对驱动噪声的敏感性。我们进一步得出所有残留,高阶敏感性的表达式。我们通过保护原子合奏的集体激发来实验研究该方案,在该集合中,不均匀的倾向起源于热运动。使用光子的存储和检索,我们证明了对不均匀性的完全抑制,从而延长了记忆时间。我们的方案可以应用于消除其他系统中的动作驱动,从而改善了用中性原子的量子门和记忆的性能。它通常也适用于各种气体,固体和工程系统,在这种系统中,对时间,空间或其他域的敏感性限制了系统的扩展。

We introduce and demonstrate a scheme for eliminating the inhomogeneous dephasing of a collective quantum state. The scheme employs off-resonant fields that continuously dress the collective state with an auxiliary sensor state, which has an enhanced and opposite sensitivity to the same source of inhomogeneity. We derive the optimal conditions under which the dressed state is fully protected from dephasing, when using either one or two dressing fields. The latter provides better protection, circumvents qubit phase rotation, and suppresses the sensitivity to drive noise. We further derive expressions for all residual, higher-order, sensitivities. We experimentally study the scheme by protecting a collective excitation of an atomic ensemble, where inhomogeneous dephasing originates from thermal motion. Using photon storage and retrieval, we demonstrate complete suppression of inhomogeneous dephasing and consequently a prolonged memory time. Our scheme may be applied to eliminate motional dephasing in other systems, improving the performance of quantum gates and memories with neutral atoms. It is also generally applicable to various gas, solid, and engineered systems, where sensitivity to variations in time, space, or other domains limits possible scale-up of the system.

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