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量子 Zeno 动力学确定性地产生多粒子纠缠。

Deterministic generation of multiparticle entanglement by quantum Zeno dynamics.

机构信息

Laboratoire Kastler Brossel, École Normale Supérieure, Université Pierre et Marie Curie Paris 6, CNRS, Collège de France, 24 rue Lhomond, 75005 Paris, France.

出版信息

Science. 2015 Sep 18;349(6254):1317-21. doi: 10.1126/science.aaa0754.

Abstract

Multiparticle entangled quantum states, a key resource in quantum-enhanced metrology and computing, are usually generated by coherent operations exclusively. However, unusual forms of quantum dynamics can be obtained when environment coupling is used as part of the state generation. In this work, we used quantum Zeno dynamics (QZD), based on nondestructive measurement with an optical microcavity, to deterministically generate different multiparticle entangled states in an ensemble of 36 qubit atoms in less than 5 microseconds. We characterized the resulting states by performing quantum tomography, yielding a time-resolved account of the entanglement generation. In addition, we studied the dependence of quantum states on measurement strength and quantified the depth of entanglement. Our results show that QZD is a versatile tool for fast and deterministic entanglement generation in quantum engineering applications.

摘要

多粒子纠缠量子态是量子增强计量学和计算的关键资源,通常仅通过相干操作产生。然而,当环境耦合被用作部分状态生成的一部分时,可以获得不同寻常的量子动力学形式。在这项工作中,我们使用基于光学微腔的无损测量的量子 Zeno 动力学(QZD),在不到 5 微秒的时间内,在 36 个量子位原子的集合中确定性地生成不同的多粒子纠缠态。我们通过进行量子层析术来描述所得状态,得到了纠缠生成的时间分辨描述。此外,我们研究了量子态对测量强度的依赖性,并量化了纠缠的深度。我们的结果表明,QZD 是量子工程应用中快速确定性纠缠生成的多功能工具。

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