arXiv:2608.30375·v1·High Energy Physics — Phenomenology
First-principle predictions of fragmentation functions via quantum computing
Juan J. Gálvez-Viruet · Felipe J. Llanes-Estrada · Nicolas M. Arenaza · María Gómez-Rocha · T. J. Hobbs
Abstract
We report on an algorithm to compute fragmentation functions from the first principles Quantum Chromodynamics (QCD) Hamiltonian quantized in Light-Front Gauge, opening a path for digital quantum computers to calculate these longitudinal jet-structure observables. Simulating the behaviour of such computers on a classical cluster (which is memory-limited to about 30 qubits, given the expansive Hilbert spaces of actual quantum computers), we run a demonstration of a heavy-quark leading parton fragmenting into quarkonium, which we benchmark against NRQCD computations. Future quantum computers, perhaps concurrently running with HL-LHC, would have ample opportunity to extract arbitrary parton-hadron combinations.
Comments: 6 pages, 4 figures