Chiral condensates and screening masses of neutral pseudoscalar mesons from lattice QCD at physical quark masses
arXiv:2501.11262 · doi:10.1103/PhysRevD.111.074513
Abstract
We investigate the effects of temperature and external magnetic fields on the chiral condensates and screening masses of neutral pseudoscalar mesons, including , , and , in (2+1)-flavor lattice QCD with physical quark masses. The chiral condensates are intrinsically connected to the screening masses via Ward-Takahashi identities, with the latter characterizing the inverse of the spatial correlation length in the pseudoscalar channel. Using highly improved staggered quarks, we perform simulations on lattices with temporal extents and an aspect ratio of 4, covering five temperatures from 145 MeV to 166 MeV. For each temperature, eight magnetic field strengths are simulated, reaching up to GeV. These simulations allow us to provide continuum estimates for the chiral condensates and screening masses. We observe intricate behavior in the light (), strange-light () and strange () quark condensates as functions of the magnetic field and temperature, reflecting the competition between magnetic catalysis and inverse magnetic catalysis effects. This complex behavior is also mirrored in the screening masses of the neutral pseudoscalar mesons. Notably, the screening masses of and exhibit a non-monotonic dependence on , closely following the variations in their corresponding chiral condensates. Meanwhile, the screening mass of decreases monotonically with increasing . These findings provide valuable insights for understanding the behavior of QCD in a thermomagnetic medium and can serve as benchmarks for low-energy QCD models and effective theories.
References in corpus (20)
- The equation of state in (2+1)-flavor QCD
- Highly Improved Staggered Quarks on the Lattice, with Applications to Charm Physics
- The QCD Equation of State to from Lattice QCD
- QCD Phase Transition in a Strong Magnetic Background
- The QCD equation of state in background magnetic fields
- Meson screening masses from lattice QCD with two light and the strange quark
- Chiral magnetic effect reveals the topology of gauge fields in heavy-ion collisions
- Magnetic field effects on the static quark potential at zero and finite temperature
- In-medium modifications of open and hidden strange-charm mesons from spatial correlation functions
- Phase diagram of QCD in a magnetic background
- Recent progresses on QCD phases in a strong magnetic field -- views from Nambu--Jona-Lasinio model
- Fluctuations and correlations of net baryon number, electric charge and strangeness in a background magnetic field
- Chiral condensates and screening masses of neutral pseudoscalar mesons in thermomagnetic QCD medium
- SIMULATeQCD: A simple multi-GPU lattice code for QCD calculations
- Baryon electric charge correlation as a magnetometer of QCD
- Impacts of (inverse) magnetic catalysis on screening masses of neutral pions and sigma mesons in hot and magnetized quark matter
- Magnetic field induced corrections to the NJL model coupling constant from vacuum polarization
- Magnetic field dependence of the neutral pion longitudinal screening mass in the linear sigma model with quarks
- QCD phase structure in strong magnetic fields
- Thermomagnetic effects on light pseudo-scalar meson masses within the SU(3) Nambu-Jona--Lasinio model
Cited by in corpus (5)
- Structure of heavy quarkonia in a strong magnetic field
- Chiral Properties of -Flavor QCD in Magnetic Fields at Zero Temperature
- Landau-Zener-Stückelberg-Majorana dynamics of magnetized quarkonia
- Quarkonium spectra with magnetically induced anisotropic confinement
- Probing the chiral and axial symmetry restoration via meson susceptibilities in holographic QCD