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Quantum-annealing-inspired algorithms for multijet clustering

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arxiv 2410.14233 v3 pith:YLENHADO submitted 2024-10-18 quant-ph hep-exhep-ph

Quantum-annealing-inspired algorithms for multijet clustering

classification quant-ph hep-exhep-ph
keywords clusteringmultijetalgorithmsquantum-annealing-inspiredqubocrucialoptimizationproblem
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Jet clustering or reconstruction is a crucial component at high energy colliders, a procedure to identify sprays of collimated particles originating from the fragmentation and hadronization of quarks and gluons. It is a complicated combinatorial optimization problem and requires intensive computing resources. In this study, we formulate jet reconstruction as a quadratic unconstrained binary optimization (QUBO) problem and introduce novel quantum-annealing-inspired algorithms for clustering multiple jets in electron-positron collision events. One of these quantum-annealing-inspired algorithms, ballistic simulated bifurcation, overcomes problems previously observed in multijet clustering with quantum-annealing approaches. We find that both the distance defined in the QUBO matrix and the prediction power of the QUBO solvers have crucial impacts on the multijet clustering performance. This study opens up a new approach to globally reconstructing multijet beyond dijet in one go, in contrast to the traditional iterative method.

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  1. Overview of Applications of Quantum Computing in QCD

    hep-ph 2026-07 accept novelty 2.0

    A concise literature overview of quantum algorithms for QCD and collider tasks, stressing possible advantages over classical methods and NISQ hardware limits.