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Quantum multi-programming for Grover's search

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arxiv 2207.14464 v2 pith:5WYU5KUT submitted 2022-07-29 quant-ph

classification quant-ph
keywords algorithmgroverquantumalgorithmsmulti-programmingcanonicalcircuitscomputers
verification ladder T0 review T1 audit T2 compute T3 formal
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Quantum multi-programming is a method utilizing contemporary noisy intermediate-scale quantum computers by executing multiple quantum circuits concurrently. Despite early research on it, the research remains on quantum gates or small-size quantum algorithms without correlation. In this paper, we propose a quantum multi-programming (QMP) algorithm for Grover's search. Our algorithm decomposes Grover's algorithm by the partial diffusion operator and executes the decomposed circuits in parallel by QMP. We proved that this new algorithm increases the rotation angle of the Grover operator which, as a result, increases the success probability. The new algorithm is implemented on IBM quantum computers and compared with the canonical Grover's algorithm and other variations of Grover's algorithms. The empirical tests validate that our new algorithm outperforms other variations of Grover's algorithms as well as the canonical Grover's algorithm.

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    OQTOPUS is an open-source full-stack quantum computing system with transpilation, multiprogramming, and error mitigation in the backend, demonstrated with basic sampling and estimation jobs on a real superconducting q...

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