MULTIGRID METHODS FOR THE COMPUTATION OF PROPAGATORS IN GAUGE FIELDS

Author:

KALKREUTER THOMAS1

Affiliation:

1. II. Institut für Theoretische Physik, Universität Hamburg Luruper Chaussee 149, D-22 761 Hamburg, Germany

Abstract

Multigrid methods were invented for the solution of discretized partial differential equations in order to overcome the slowness of traditional algorithms by updates on various length scales. In the present work generalizations of multigrid methods for propagators in gauge fields are investigated. Gauge fields are incorporated in algorithms in a covariant way. The kernel C of the restriction operator which averages from one grid to the next coarser grid is defined by projection on the ground-state of a local Hamiltonian. The idea behind this definition is that the appropriate notion of smoothness depends on the dynamics. The ground-state projection choice of C can be used in arbitrary dimension and for arbitrary gauge group. We discuss proper averaging operations for bosons and for staggered fermions. The kernels C can also be used in multigrid Monte Carlo simulations, and for the definition of block spins and blocked gauge fields in Monte Carlo renormalization group studies. Actual numerical computations are performed in four-dimensional SU(2) gauge fields. We prove that our proposals for block spins are “good”, using renormalization group arguments. A central result is that the multigrid method works in arbitrarily disordered gauge fields, in principle. It is proved that computations of propagators in gauge fields without critical slowing down are possible when one uses an ideal interpolation kernel. Unfortunately, the idealized algorithm is not practical, but it was important to answer questions of principle. Practical methods are able to outperform the conjugate gradient algorithm in case of bosons. The case of staggered fermions is harder. Multigrid methods give considerable speed-ups compared to conventional relaxation algorithms, but on lattices up to 184 conjugate gradient is superior.

Publisher

World Scientific Pub Co Pte Lt

Subject

Computational Theory and Mathematics,Computer Science Applications,General Physics and Astronomy,Mathematical Physics,Statistical and Nonlinear Physics

Cited by 6 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Gauge-equivariant pooling layers for preconditioners in lattice QCD;Physical Review D;2024-08-28

2. Another Look at Neural Multigrid;International Journal of Modern Physics C;1997-04

3. THE PRINCIPLE OF INDIRECT ELIMINATION;International Journal of Modern Physics C;1996-08

4. Multigrid methods for propagators in lattice gauge theories;Journal of Computational and Applied Mathematics;1995-11

5. Spectrum of the Dirac operator and inversion algorithms with dynamical staggered fermions;Nuclear Physics B - Proceedings Supplements;1995-04

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