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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Reversible quantum measurement with arbitrary spins
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Reversible quantum measurement with arbitrary spins

机译:任意自旋的可逆量子测量

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We propose a physically reversible quantum measurement of an arbitrary spin-s system using a spin-j probe via an Ising interaction. In the case of a spin-1/2 system (s=1/2), we explicitly construct a reversing measurement and evaluate the degree of reversibility in terms of fidelity. The recovery of the measured state is pronounced when the probe has a high spin (j > 1/2), because the fidelity changes drastically during the reversible measurement and the reversing measurement. We also show that the reversing measurement scheme for a spin-1/2 system can serve as an experimentally feasible approximate reversing measurement for a high-spin system (s > 1/2). If the interaction is sufficiently weak, the reversing measurement can recover a cat state almost deterministically in spite of there being a large fidelity change. (c) 2006 American Institute of Physics.
机译:我们提出通过Ising相互作用使用spin-j探针对任意spin-s系统进行物理可逆的量子测量。在旋转1/2系统(s = 1/2)的情况下,我们明确构造了一个可逆测量值,并根据保真度评估了可逆性程度。当探针具有高自旋(j> 1/2)时,将恢复测量状态,因为保真度在可逆测量和可逆测量期间会急剧变化。我们还表明,自旋1/2系统的反向测量方案可以用作高自旋系统(s> 1/2)的实验可行的近似反向测量。如果相互作用足够弱,尽管保真度变化很大,反向测量仍可以几乎确定地恢复猫状态。 (c)2006年美国物理研究所。

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