Chiral magnetization of non-Abelian vacuum: a lattice study
arXiv:0906.0488 · doi:10.1016/j.nuclphysb.2009.10.008
Abstract
The chiral magnetization properties of cold and hot vacua are studied using quenched simulations in lattice Yang-Mills theory. In weak external magnetic fields the magnetization is proportional to the first power of the magnetic field. We evaluate numerically the coefficient of the proportionality (the chiral susceptibility) using near-zero eigenmodes of overlap fermions. We found that the product of the chiral susceptibility and the chiral condensate equals to 46(3) MeV. This value is very close to the phenomenological value of 50 MeV. In strong fields the magnetization is a nonlinear function of the applied magnetic field. We find that the nonlinear features of the magnetization are well described by an inverse tangent function. The magnetization is weakly sensitive to temperature in the confinement phase.
8 pages, 3 figures, uses elsarticle style; revision: factorization checked numerically, references added, published version
References in corpus (10)
- Estimate of the magnetic field strength in heavy-ion collisions
- Chiral transition in a strong magnetic background
- Quark-hadron phase transition in a magnetic field
- Determination of the magnetic susceptibility of the quark condensate using radiative heavy meson decays
- Extracting Electric Polarizabilities from Lattice QCD
- Magnetic susceptibility of the QCD vacuum
- Calorons and dyons at the thermal phase transition analyzed by overlap fermions
- Probing the nucleon's transversity and the photon's distribution amplitude in lepton pair photoproduction
- Finite-temperature chiral condensate and low-lying Dirac eigenvalues in quenched SU(2) lattice gauge theory
- Zero mode solutions of quark Dirac equations in QCD as the sources of chirality violating condensates
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- Exploring Dense and Cold QCD in Magnetic Fields
- Maxwell-Chern-Simons Hydrodynamics for the Chiral Magnetic Effect
- Towards a quantum theory of chiral magnetic effect
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- Effects of strangeness on the chiral pseudocritical line
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- Phonon spectrum of QCD vacuum in magnetic-field-induced superconducting phase
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- Vacuum free energy, quark condensate shifts and magnetization in three-flavor chiral perturbation theory to in a uniform magnetic field