We report on our study of two-flavor full QCD on anisotropic lattices using O(u)-improved Wilson quarks coupled with an RG-improved glue. The bare gauge and quark anisotropies corresponding to the renormalized anisotropy < = a,/at = 2 are determined as functions of p and K, using the Wilson loop and
Staggered Fermion Thermodynamics using Anisotropic Lattices
β Scribed by L. Levkova
- Publisher
- Elsevier Science
- Year
- 2003
- Tongue
- English
- Weight
- 245 KB
- Volume
- 119
- Category
- Article
- ISSN
- 0920-5632
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β¦ Synopsis
Numerical simulations of full QCD on anisotropic lattices provide a convenient way to study QCD thermodynamics with fixed physics scales and reduced lattice spacing errors. We report results from calculations with 2-flavors of dynamical fermions where all bare parameters and hence the physics scales are kept constant while the temperature is changed in small steps by varying only the number of the time slices. The results from a series of zero-temperature scale setting simulations are used to determine the Karsch coefficients and the equation of state at finite temperatures.
π SIMILAR VOLUMES
## Simulations of QCD with two flavours of improved Wilson quarks on an anisotropic lattice are discussed. Methods for improving the performance of the Hybrid Monte Carlo (HMC) algorithm in these studies are described.
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