\({\ell_0}\) 鲁棒非神谕量子搜索优化

Tianyi Zhang , Yuan Ke
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引用次数: 0

摘要

在本文中,我们介绍了一种创新的混合量子搜索算法——鲁棒非oracle量子搜索(RNQS),该算法专门用于在大量随机数中有效识别最小值。与Grover算法不同,建议的RNQS算法避免了对描述真实解决方案状态的oracle函数的需求,而这个特性对于数据科学应用程序来说通常是不切实际的。基于现有的非神谕量子搜索算法,RNQS增强了鲁棒性,同时大大减少了运行时间。通过仔细的分析和广泛的实证实验,证明了RNQS的优越性能。我们的研究结果强调了RNQS算法作为量子计算领域组合优化问题的有效和高效解决方案的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
\({\ell_0}\) Optimization with Robust Non-Oracular Quantum Search
In this article, we introduce an innovative hybrid quantum search algorithm, the Robust Non-oracle Quantum Search (RNQS), which is specifically designed to efficiently identify the minimum value within a large set of random numbers. Distinct from the Grover’s algorithm, the proposed RNQS algorithm circumvents the need for an oracle function that describes the true solution state, a feature often impractical for data science applications. Building on existing non-oracular quantum search algorithms, RNQS enhances robustness while substantially reducing running time. The superior properties of RNQS have been demonstrated through careful analysis and extensive empirical experiments. Our findings underscore the potential of the RNQS algorithm as an effective and efficient solution to combinatorial optimization problems in the realm of quantum computing.
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