IMPROVEMENT OF THERMODYNAMICAL MONTE CARLO SIMULATION IN SU(2) PURE GAUGE FIELD THEORY ——AN APPROACH TO CONTINUUM PHYSICS LIMIT

  • The thermodynamical quantities of SU(2) pure lattice gauge field have been simulated first time on the asymmetric lattice (ξ>1).The finite size effect and continuum physics limits have also been studied.The results show that the use of asymmetric lattice is of benefit to calculate the thermodynamical quantities and study the behavior of continuum physics limits.In addition,it is explained that the efficiency of the whole Monte Carlo simulation and the calculation of heat capacity will be improved quite a lot by using bias sampling technique.
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  • [1] J. Engels, F. Karsch, H, Satz, 1. Montvay, Phys. Lett., 101B (1981), 89[2] J. Engels, F. Karsch and H. Satz, Nucl. Phys., B205(I982), 545.[3] J. Engels, et al., Nucl, Phys., B280(1987), 577.[4] 萨本豪、朱正坤、张孝泽、金星南,高能物理与核物理,12(1988),601.[5] S. Das and J. Kogut, Nucl. Phys,B265(1986), 303.[6] S. Das and J. Kogut, Phys. Rev., D31(1985), 2704.[7] J. Engels, F. Karsch and H. Satz, Nucl. Phys., B205(1982), 239.[8] F. Karsch, Nucl. Phys., B205(1982), 285.[9] 裴鹿成、张孝泽、蒙特卡罗方法在粒子输运问题中的应用,科学出版社,1986.
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ZHU Zheng-Kun, ZHANG Xiao-Ze, JIN Xing-Nan and SA Ben-Hao. IMPROVEMENT OF THERMODYNAMICAL MONTE CARLO SIMULATION IN SU(2) PURE GAUGE FIELD THEORY ——AN APPROACH TO CONTINUUM PHYSICS LIMIT[J]. Chinese Physics C, 1989, 13(4): 339-345.
ZHU Zheng-Kun, ZHANG Xiao-Ze, JIN Xing-Nan and SA Ben-Hao. IMPROVEMENT OF THERMODYNAMICAL MONTE CARLO SIMULATION IN SU(2) PURE GAUGE FIELD THEORY ——AN APPROACH TO CONTINUUM PHYSICS LIMIT[J]. Chinese Physics C, 1989, 13(4): 339-345. shu
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Received: 1900-01-01
Revised: 1900-01-01
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IMPROVEMENT OF THERMODYNAMICAL MONTE CARLO SIMULATION IN SU(2) PURE GAUGE FIELD THEORY ——AN APPROACH TO CONTINUUM PHYSICS LIMIT

    Corresponding author: ZHU Zheng-Kun,
  • Suzhou UniversityInstitute of Atomic Energy,Beijing

Abstract: The thermodynamical quantities of SU(2) pure lattice gauge field have been simulated first time on the asymmetric lattice (ξ>1).The finite size effect and continuum physics limits have also been studied.The results show that the use of asymmetric lattice is of benefit to calculate the thermodynamical quantities and study the behavior of continuum physics limits.In addition,it is explained that the efficiency of the whole Monte Carlo simulation and the calculation of heat capacity will be improved quite a lot by using bias sampling technique.

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