Basic Elements for Simulations of Standard Model Physics with Quantum Annealers: Multigrid and Clock States
arXiv:2202.12340 · doi:10.1103/PhysRevA.106.052605
Abstract
We explore the potential of D-Wave's quantum annealers for computing some of the basic components required for quantum simulations of Standard Model physics. By implementing a basic multigrid (including "zooming") and specializing Feynman-clock algorithms, D-Wave's Advantage is used to study harmonic and anharmonic oscillators relevant for lattice scalar field theories and effective field theories, the time evolution of a single plaquette of SU(3) Yang-Mills lattice gauge field theory, and the dynamics of flavor entanglement in four neutrino systems.
27 pages + Supplemental Material, 13 figures, 11 tables; improved Section III B; Published version
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