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Decoherence in quantum walks - a review

机译:量子行走中的退相干-评论

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摘要

The development of quantum walks in the context of quantum computation, as generalisations of random walk techniques, has led rapidly to several new quantum algorithms. These all follow a unitary quantum evolution, apart from the final measurement. Since logical qubits in a quantum computer must be protected from decoherence by error correction, there is no need to consider decoherence at the level of algorithms. Nonetheless, enlarging the range of quantum dynamics to include non-unitary evolution provides a wider range of possibilities for tuning the properties of quantum walks. For example, small amounts of decoherence in a quantum walk on the line can produce more uniform spreading (a top-hat distribution), without losing the quantum speed up. This paper reviews the work on decoherence, and more generally on non-unitary evolution, in quantum walks and suggests what future questions might prove interesting to pursue in this area.
机译:作为随机游走技术的概括,在量子计算的背景下量子游走的发展迅速导致了几种新的量子算法。除最终测量外,所有这些都遵循单一的量子演化。由于必须通过纠错保护量子计算机中的逻辑量子位免受退相干,因此无需在算法级别考虑退相干。但是,将量子动力学的范围扩大到包括非单位演化在内,为调整量子行走的性质提供了更广泛的可能性。例如,线上的量子走行中的少量退相干可以产生更均匀的扩展(高帽分布),而不会损失量子速度。本文回顾了量子走行中有关去相干的工作,更普遍地涉及了非单一进化的工作,并提出了在该领域中可能会引起关注的未来问题。

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