模拟量子寄存器解纠缠

Paweł Ryszawa
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引用次数: 2

摘要

在经典计算机上实现受量子启发的算法,需要在节省操作内存的必要性和充分表示具有可能纠缠的量子态所需的内存量之间进行权衡。众所周知,后者以量子位的数量呈指数级消耗内存。本文概述了如何在适度扭曲或完全不扭曲纠缠的情况下显著减少必要内存量的想法。目前考虑的是实数非负概率幅值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling quantum register disentanglement
Implementing quantum-inspired algorithms on classical computers suffers trade-off between the necessity of saving operational memory and the amount of memory necessary to fully represent a quantum state with possible entanglement. The latter is well known to consume the memory exponentially in the number of qubits. This paper sketches out the idea on how to reduce significantly the amount of necessary memory while distorting the entanglement moderately or not at all. At present, considered are real nonnegative probability amplitudes.
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