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arXiv:2508.05736·v1·Quantum Physics

Role of Plaquette Term in Genuine D String Dynamics on Quantum Simulators

Yizhuo Tian · N. S. Srivatsa🇩🇪 · Kaidi Xu🇩🇪 · Jesse J. Osborne🇩🇪 · Umberto Borla🇩🇪 · Jad C. Halimeh🇩🇪

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Abstract

With the advent of quantum simulators of D lattice gauge theories (LGTs), a fundamental open question is under what circumstances the observed physics is genuinely D rather than effectively D. Here, we address this question in the ongoing strong effort to quantum-simulate string dynamics in D LGTs on state-of-the-art quantum hardware. Through tensor network simulations and analytic derivations, we show that the plaquette term, which represents a magnetic field and only emerges in spatial dimensions, plays a crucial role in \textit{genuine} D string dynamics deep in the confined regime. In its absence and for minimal-length (Manhattan-distance) strings, we demonstrate how string breaking, although on a lattice in spatial dimensions, can be effectively mapped to a D dynamical process independently of lattice geometry. Our findings not only answer the question of what qualifies as genuine D string dynamics, but also serve as a clear guide for future quantum simulation experiments of D LGTs.

Comments: pages, figures

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