论文标题

绝热量子计算如何符合量子自动机理论?

How Does Adiabatic Quantum Computation Fit into Quantum Automata Theory?

论文作者

Yamakami, Tomoyuki

论文摘要

量子计算已成为我们时代的强大计算媒介,并且比任何当前已知的经典计算算法都更快地证明了将正整数和搜索数据库的出色效率。量子系统的绝热演化已被研究为物理实现量子计算的潜在手段。到目前为止,所有对绝热量子系统的研究都涉及多项式时间限制的计算,并且很少关注,例如,仅消耗恒定存储空间的绝热量子系统。这样的量子系统可以以类似于量子有限自动机的形式进行建模。该博览会敢于提出一个大胆的问题,即如何使绝热量子计算适合量子自动机理论的快速发展框架。作为我们对这个著名但深刻的问题的回答,我们首先制定了一个基本平台,以使用有限的计算资源(规模,能源,光谱差距等)进行绝热进化量子系统(AEQSS),然后建立如何通过操作合适的量子有限自动组的合适家族来构建此类AEQS。我们进一步探讨了由适当构建的AEQSS迅速解决决策问题的基本结构特性(以及承诺问题)。

Quantum computation has emerged as a powerful computational medium of our time, having demonstrated the remarkable efficiency in factoring a positive integer and searching databases faster than any currently known classical computing algorithm. Adiabatic evolution of quantum systems have been studied as a potential means that physically realizes quantum computation. Up to now, all the research on adiabatic quantum systems has dealt with polynomial time-bounded computation and little attention has been paid to, for instance, adiabatic quantum systems consuming only constant memory space. Such quantum systems can be modeled in a form similar to quantum finite automata. This exposition dares to ask a bold question of how to make adiabatic quantum computation fit into the rapidly progressing framework of quantum automata theory. As our answer to this eminent but profound question, we first lay out a fundamental platform to carry out adiabatic evolutionary quantum systems (AEQSs) with limited computational resources (in size, energy, spectral gap, etc.) and then establish how to construct such AEQSs by operating suitable families of quantum finite automata. We further explore fundamental structural properties of decision problems (as well as promise problems) solved quickly by the appropriately constructed AEQSs.

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