Unavoidable decoherence in the quantum control of an unknown state

D. Kielpinski, R.A. Briggs, H. Wiseman
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引用次数: 2

Abstract

Abstract A common objective for quantum control is to force a quantum system, initially in an unknown state, into a particular target subspace. We show that if the subspace is required to be a decoherence-free subspace of dimension greater than 1, then such control must be decoherent. That is, it will take almost any pure state to a mixed state. We make no assumptions about the control mechanism, but our result implies that for this purpose coherent control offers no advantage, in principle, over the obvious measurement-based feedback protocol.
未知状态的量子控制中不可避免的退相干
量子控制的一个共同目标是迫使一个量子系统,最初处于未知状态,进入一个特定的目标子空间。我们证明了如果子空间要求是维数大于1的无退相干子空间,那么这种控制必须是退相干的。也就是说,几乎任何纯态都会变成混合态。我们没有对控制机制做任何假设,但我们的结果表明,对于这个目的,相干控制在原则上没有优势,优于明显的基于测量的反馈协议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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