Journal Article PUBDB-2022-00513

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Lattice meets lattice: Application of lattice cubature to models in lattice gauge theory

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2021
Elsevier Amsterdam

Journal of computational physics 443, 110527 () [10.1016/j.jcp.2021.110527]
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Report No.: DESY-20-209; arXiv:2011.05451

Abstract: •Recursive integration strategies independent of the number of integration variables are proposed.•We show lattice based cubature methods that can improve certain integrals occurring in physics.•We show FFT based methods to efficiently calculate certain integrals occurring in physics. High dimensional integrals are abundant in many fields of research including quantum physics. The aim of this paper is to develop efficient recursive strategies to tackle a class of high dimensional integrals having a special product structure with low order couplings, motivated by models in lattice gauge theory from quantum field theory. A novel element of this work is the potential benefit in using lattice cubature rules. The group structure within lattice rules combined with the special structure in the physics integrands may allow efficient computations based on Fast Fourier Transforms. Applications to the quantum mechanical rotor and compact U(1) lattice gauge theory in two and three dimensions are considered.

Keyword(s): dimension: 3 ; lattice ; lattice field theory ; Fourier transformation ; field theory ; quantum mechanics ; U(1) ; Lattice cubature ; Quasi-Monte Carlo ; Recursive integration ; Lattice gauge theory ; Quantum physics

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Note: Journal of Computational Physics Volume 443, 15 October 2021, 110527VOLLTEXT angefragt Waiting for fulltext

Contributing Institute(s):
  1. Zeuthen Particle PhysicsTheory (Z_ZPPT)
Research Program(s):
  1. 611 - Fundamental Particles and Forces (POF4-611) (POF4-611)
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  1. No specific instrument

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Lattice meets lattice: Application of lattice cubature to models in lattice gauge theory
[10.3204/PUBDB-2021-04262]  GO OpenAccess  Download fulltext Files  Download fulltextFulltext by arXiv.org BibTeX | EndNote: XML, Text | RIS


 Record created 2022-01-20, last modified 2025-07-24


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