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Quantum feedback control of atomic ensembles and spinor Bose-Einstein condensates

机译:原子团和旋量玻色-爱因斯坦凝聚物的量子反馈控制

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摘要

Cold atomic ensembles and spinor Bose-Einstein condensates are potential candidates for quantum memories as they have long coherence times and can be coherently controlled. Unlike most candidates for quantum memories, which are genuine or effective single-particle systems, in atomic ensembles the quantum information is stored as a spin coherent state involving a very large number of atoms. A typical task with such ensembles is to drive the state towards a particular quantum state. While such quantum control methods are well developed for qubit systems, it is a nontrivial task to extend quantum control methods to the many-particle case. The objective of this work is to deterministically steer an arbitrary state of the atomic ensemble into a desired spin coherent state. To this end, we design our control law using stochastic stability theory, the quantum filtering theorem, and phase contrast imaging. We apply our control laws to different axes and show that it is possible to manipulate the atoms into different target states.
机译:冷原子集合体和自旋玻色-爱因斯坦凝聚体是量子存储器的潜在候选者,因为它们具有长的相干时间并且可以被相干地控制。与真正的或有效的单粒子系统的大多数量子存储候选不同,在原子集合中,量子信息以涉及大量原子的自旋相干状态存储。这种集合体的典型任务是将状态驱动到特定的量子状态。尽管这样的量子控制方法已经为qubit系统很好地开发了,但是将量子控制方法扩展到多粒子的情况是一项艰巨的任务。这项工作的目的是确定性地将原子团的任意状态转变为所需的自旋相干状态。为此,我们使用随机稳定性理论,量子滤波定理和相衬成像设计了控制律。我们将控制定律应用于不同的轴,并表明可以将原子操纵为不同的目标状态。

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