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New algorithms and new results for strong coupling LQCD
We present and compare new types of algorithms for lattice QCD with staggered fermions in the limit of infinite gauge coupling. These algorithms are formulated on a discrete spatial lattice but with continuous Euclidean time. They make use of the exact Hamiltonian, with the inverse temperature beta...
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Lenguaje: | eng |
Publicado: |
2012
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Acceso en línea: | https://dx.doi.org/10.22323/1.164.0194 http://cds.cern.ch/record/1497457 |
_version_ | 1780926688635387904 |
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author | Unger, Wolfgang de Forcrand, Philippe |
author_facet | Unger, Wolfgang de Forcrand, Philippe |
author_sort | Unger, Wolfgang |
collection | CERN |
description | We present and compare new types of algorithms for lattice QCD with staggered fermions in the limit of infinite gauge coupling. These algorithms are formulated on a discrete spatial lattice but with continuous Euclidean time. They make use of the exact Hamiltonian, with the inverse temperature beta as the only input parameter. This formulation turns out to be analogous to that of a quantum spin system. The sign problem is completely absent, at zero and non-zero baryon density. We compare the performance of a continuous-time worm algorithm and of a Stochastic Series Expansion algorithm (SSE), which operates on equivalence classes of time-ordered interactions. Finally, we apply the SSE algorithm to a first exploratory study of two-flavor strong coupling lattice QCD, which is manageable in the Hamiltonian formulation because the sign problem can be controlled. |
id | cern-1497457 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2012 |
record_format | invenio |
spelling | cern-14974572023-03-14T16:32:36Zdoi:10.22323/1.164.0194http://cds.cern.ch/record/1497457engUnger, Wolfgangde Forcrand, PhilippeNew algorithms and new results for strong coupling LQCDParticle Physics - LatticeWe present and compare new types of algorithms for lattice QCD with staggered fermions in the limit of infinite gauge coupling. These algorithms are formulated on a discrete spatial lattice but with continuous Euclidean time. They make use of the exact Hamiltonian, with the inverse temperature beta as the only input parameter. This formulation turns out to be analogous to that of a quantum spin system. The sign problem is completely absent, at zero and non-zero baryon density. We compare the performance of a continuous-time worm algorithm and of a Stochastic Series Expansion algorithm (SSE), which operates on equivalence classes of time-ordered interactions. Finally, we apply the SSE algorithm to a first exploratory study of two-flavor strong coupling lattice QCD, which is manageable in the Hamiltonian formulation because the sign problem can be controlled.We present and compare new types of algorithms for lattice QCD with staggered fermions in the limit of infinite gauge coupling. These algorithms are formulated on a discrete spatial lattice but with continuous Euclidean time. They make use of the exact Hamiltonian, with the inverse temperature beta as the only input parameter. This formulation turns out to be analogous to that of a quantum spin system. The sign problem is completely absent, at zero and non-zero baryon density. We compare the performance of a continuous-time worm algorithm and of a Stochastic Series Expansion algorithm (SSE), which operates on equivalence classes of time-ordered interactions. Finally, we apply the SSE algorithm to a first exploratory study of two-flavor strong coupling lattice QCD, which is manageable in the Hamiltonian formulation because the sign problem can be controlled.arXiv:1211.7322CERN-PH-TH-2012-326CERN-PH-TH-2012-326oai:cds.cern.ch:14974572012-12-03 |
spellingShingle | Particle Physics - Lattice Unger, Wolfgang de Forcrand, Philippe New algorithms and new results for strong coupling LQCD |
title | New algorithms and new results for strong coupling LQCD |
title_full | New algorithms and new results for strong coupling LQCD |
title_fullStr | New algorithms and new results for strong coupling LQCD |
title_full_unstemmed | New algorithms and new results for strong coupling LQCD |
title_short | New algorithms and new results for strong coupling LQCD |
title_sort | new algorithms and new results for strong coupling lqcd |
topic | Particle Physics - Lattice |
url | https://dx.doi.org/10.22323/1.164.0194 http://cds.cern.ch/record/1497457 |
work_keys_str_mv | AT ungerwolfgang newalgorithmsandnewresultsforstrongcouplinglqcd AT deforcrandphilippe newalgorithmsandnewresultsforstrongcouplinglqcd |