Encoding-independent optimization problem formulation for quantum computing

Federico D. Domínguez, Josua Unger, M. Traube, B. Mant, C. Ertler, W. Lechner
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引用次数: 5

Abstract

We review encoding and hardware-independent formulations of optimization problems for quantum computing. Using this generalized approach, an extensive library of optimization problems from the literature and their various derived spin encodings are discussed. Common building blocks that serve as a construction kit for formulating these spin Hamiltonians are provided. This previously introduced approach paves the way toward a fully automatic construction of Hamiltonians for arbitrary discrete optimization problems and this freedom in the problem formulation is a key step for tailoring optimal spin Hamiltonians for different hardware platforms.
量子计算的编码无关优化问题表述
我们回顾了量子计算优化问题的编码和硬件无关的公式。利用这种广义方法,讨论了文献中大量的优化问题及其各种派生自旋编码。提供了作为构造这些自旋哈密顿量的构建工具的共同构建块。这种先前介绍的方法为任意离散优化问题的哈密顿量的全自动构造铺平了道路,这种问题表述中的自由是为不同硬件平台定制最优自旋哈密顿量的关键步骤。
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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