Overview of external electromagnetism and rotation in lattice QCD
arXiv:2103.00237 · doi:10.1140/epja/s10050-021-00530-8
Abstract
This is an introductory review of lattice QCD with external fields. The study of external magnetic fields is one of the greatest achievements in modern lattice QCD. Large-scale simulations and detailed analyses have revealed intriguing properties of QCD in the magnetic fields. The study of external electric fields is more challenging because of a technical difficulty. We overview the successes and challenges of the lattice simulations with the electromagnetic fields. We also introduce a newly developing field, the lattice simulation of rotating QCD matters.
EPJA Topical Issue "The QCD Phase Diagram in Strong Magnetic Fields"
References in corpus (24)
- The Chiral Magnetic Effect
- Quantum field theory in a magnetic field: From quantum chromodynamics to graphene and Dirac semimetals
- Charge separation induced by P-odd bubbles in QCD matter
- QCD Phase Transition in a Strong Magnetic Background
- The QCD equation of state in background magnetic fields
- Chiral Properties of Strong Interactions in a Magnetic Background
- Magnetic-Field-Induced insulator-conductor transition in SU(2) quenched lattice gauge theory
- Chiral magnetic effect in lattice QCD with a chiral chemical potential
- Magnetic field effects on the static quark potential at zero and finite temperature
- Magnetic moments of light nuclei from lattice quantum chromodynamics
- Extracting Nucleon Magnetic Moments and Electric Polarizabilities from Lattice QCD in Background Electric Fields
- Full QCD calculation of neutron electric dipole moment with the external electric field method
- Neutron electric polarizability from unquenched lattice QCD using the background field approach
- Neutron electric dipole moment with external electric field method in lattice QCD
- Magnetic moments of vector, axial, and tensor mesons in lattice QCD
- Susceptibility of the QCD vacuum to CP-odd electromagnetic background fields
- mesons in strong abelian magnetic field in SU(3) lattice gauge theory
- Lattice QCD with strong external electric fields
- Anomaly-Induced Inhomogeneous Phase in Quark Matter without the Sign Problem
- Lattice QCD in curved spacetimes
- Chiral torsional effect with finite temperature, density and curvature
- Chiral phase structure of three flavor QCD in a background magnetic field
- Lattice gauge theory and gluon color-confinement in curved spacetime
- Overlap lattice fermion in a gravitational field
Cited by in corpus (6)
- Phase Transitions in Particle Physics -- Results and Perspectives from Lattice Quantum Chromo-Dynamics
- Phase diagram of QCD in a magnetic background
- Confining and chiral properties of QCD in extremely strong magnetic fields
- Quark matter under strong electric fields in the Linear Sigma Model coupled with quarks
- Chiral Properties of -Flavor QCD in Magnetic Fields at Zero Temperature
- Perturbation theory of rotating scalar fields and vacuum insensitivity to rotation