Properties of the two-dimensional random-bond [Formula Presented] Ising spin glass
We develop an exact gauge-invariant method for studying the two-dimensional [Formula Presented] spin glass. It is applied to the case of an arbitrary concentration of [Formula Presented] positive and p negative bonds and is thus a generalization of the more commonly studied [Formula Presented] model...
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th-mahidol.184302018-07-04T15:20:12Z Properties of the two-dimensional random-bond [Formula Presented] Ising spin glass J. A. Blackman J. R. Gonçalves J. Poulter University of Reading Mahidol University Mathematics Physics and Astronomy We develop an exact gauge-invariant method for studying the two-dimensional [Formula Presented] spin glass. It is applied to the case of an arbitrary concentration of [Formula Presented] positive and p negative bonds and is thus a generalization of the more commonly studied [Formula Presented] model. The ground-state properties are examined and in particular it is shown that the spin correlation exponent η remains constant over the range [Formula Presented] The value obtained is [Formula Presented] A wide range of values for η is quoted in the literature. We indicate possible reasons for the discrepancies and indicate that there are potential advantages in doing calculations at concentrations markedly lower than 50%. © 1998 The American Physical Society. 2018-07-04T08:09:25Z 2018-07-04T08:09:25Z 1998-01-01 Article Physical Review E - Statistical Physics, Plasmas, Fluids, and Related Interdisciplinary Topics. Vol.58, No.2 (1998), 1502-1507 10.1103/PhysRevE.58.1502 1063651X 2-s2.0-0001328339 https://repository.li.mahidol.ac.th/handle/123456789/18430 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=0001328339&origin=inward |
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Mathematics Physics and Astronomy J. A. Blackman J. R. Gonçalves J. Poulter Properties of the two-dimensional random-bond [Formula Presented] Ising spin glass |
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We develop an exact gauge-invariant method for studying the two-dimensional [Formula Presented] spin glass. It is applied to the case of an arbitrary concentration of [Formula Presented] positive and p negative bonds and is thus a generalization of the more commonly studied [Formula Presented] model. The ground-state properties are examined and in particular it is shown that the spin correlation exponent η remains constant over the range [Formula Presented] The value obtained is [Formula Presented] A wide range of values for η is quoted in the literature. We indicate possible reasons for the discrepancies and indicate that there are potential advantages in doing calculations at concentrations markedly lower than 50%. © 1998 The American Physical Society. |
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University of Reading |
author_facet |
University of Reading J. A. Blackman J. R. Gonçalves J. Poulter |
format |
Article |
author |
J. A. Blackman J. R. Gonçalves J. Poulter |
author_sort |
J. A. Blackman |
title |
Properties of the two-dimensional random-bond [Formula Presented] Ising spin glass |
title_short |
Properties of the two-dimensional random-bond [Formula Presented] Ising spin glass |
title_full |
Properties of the two-dimensional random-bond [Formula Presented] Ising spin glass |
title_fullStr |
Properties of the two-dimensional random-bond [Formula Presented] Ising spin glass |
title_full_unstemmed |
Properties of the two-dimensional random-bond [Formula Presented] Ising spin glass |
title_sort |
properties of the two-dimensional random-bond [formula presented] ising spin glass |
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2018 |
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https://repository.li.mahidol.ac.th/handle/123456789/18430 |
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1763490076765978624 |