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Toward extracting the scattering phase shift from integrated correlation functions II: a relativistic lattice field theory model

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arxiv 2402.15628 v2 pith:T2USQ37D submitted 2024-02-23 hep-lat hep-phnucl-th

classification hep-lathep-phnucl-th
keywords volumecorrelationfunctionsintegratedmodeltheorydifferencefield
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abstract

In present work, a relativistic relation that connects the difference of interacting and non-interacting integrated two-particle correlation functions in finite volume to infinite volume scattering phase shift through an integral is derived. We show that the difference of integrated finite volume correlation functions converge rapidly to its infinite volume limit as the size of periodic box is increased. The fast convergence of our proposed formalism is illustrated by analytic solutions of a contact interaction model, the perturbation theory calculation, and also Monte Carlo simulation of a complex $\phi^4$ lattice field theory model.

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  1. Toward extracting scattering phase shift from integrated correlation functions IV: Coulomb corrections

    hep-lat 2025-06 conditional novelty 6.0 of 10

    By subtracting the pure-Coulomb correlation function from the Coulomb-plus-short-range one, the authors derive a divergence-free integral relation to short-range phase shifts and verify it in an exactly solvable model.

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