We study three-flavor QCD in a uniform magnetic field using chiral perturbation theory ($\chi$PT). We construct the vacuum free energy density, quark condensate shifts induced by the magnetic field and the renormalized magnetization to $\mathcal{O}(p^6)$ in the chiral expansion. We find that the calculation of the free energy is greatly simplified by cancellations among two-loop diagrams involving charged mesons. In comparing our results with recent $2+1$-flavor lattice QCD data, we find that the light quark condensate shift at $\mathcal{O}(p^6)$ is in better agreement than the shift at $\mathcal{O}(p^4)$. We also find that the renormalized magnetization, due to its smallness, possesses large uncertainties at $\mathcal{O}(p^{6})$ due to the...
The two-flavor Gell-Mann-Oakes-Renner ratio is expressed in terms of low-energy pi-pi observables in...
We analyze the contribution of the η′(958) meson in the first two non-trivial moments of the QCD top...
The mass spectrum of $\pi^+$ and $\rho^+$ mesons in the presence of a static uniform magnetic field ...
We use three-flavor chiral perturbation theory ($\chi$PT) to calculate the pressure, light and $s$-q...
The basic form of the quark condensate for arbitrary values of external magnetic field and temperatu...
The non-trivial vacuum properties of Quantum Chromodynamics can be affected by a constant external ...
We determine the chiral phase structure of $2+1$-flavour QCD in dependence of temperature and the li...
We incorporate the anomalous magnetic moment (AMM) of quarks in the framework of PNJL model to study...
We address anticipated fermion-antifermion and dimension-4 gauge-field vacuum-condensate contributio...
Quantum Chromodynamics (QCD) is the quantum theory that describes strong interactions. It is a non-A...
Abstract: We study the physical mechanism of how an external magnetic field influences the QCD quark...
Lattice simulations for (2+1)-flavor QCD with external magnetic field demon-strated that the quark m...
We find that the chiral phase transition (chiral crossover) in QCD at physical point is triggered by...
Tomiya A, Ding H-T, Mukherjee S, Schmidt C, Wang X-D. Chiral phase transition of three flavor QCD wi...
The vacuum effective potential and phase diagram for the three (2+1) flavor quark-meson model have b...
The two-flavor Gell-Mann-Oakes-Renner ratio is expressed in terms of low-energy pi-pi observables in...
We analyze the contribution of the η′(958) meson in the first two non-trivial moments of the QCD top...
The mass spectrum of $\pi^+$ and $\rho^+$ mesons in the presence of a static uniform magnetic field ...
We use three-flavor chiral perturbation theory ($\chi$PT) to calculate the pressure, light and $s$-q...
The basic form of the quark condensate for arbitrary values of external magnetic field and temperatu...
The non-trivial vacuum properties of Quantum Chromodynamics can be affected by a constant external ...
We determine the chiral phase structure of $2+1$-flavour QCD in dependence of temperature and the li...
We incorporate the anomalous magnetic moment (AMM) of quarks in the framework of PNJL model to study...
We address anticipated fermion-antifermion and dimension-4 gauge-field vacuum-condensate contributio...
Quantum Chromodynamics (QCD) is the quantum theory that describes strong interactions. It is a non-A...
Abstract: We study the physical mechanism of how an external magnetic field influences the QCD quark...
Lattice simulations for (2+1)-flavor QCD with external magnetic field demon-strated that the quark m...
We find that the chiral phase transition (chiral crossover) in QCD at physical point is triggered by...
Tomiya A, Ding H-T, Mukherjee S, Schmidt C, Wang X-D. Chiral phase transition of three flavor QCD wi...
The vacuum effective potential and phase diagram for the three (2+1) flavor quark-meson model have b...
The two-flavor Gell-Mann-Oakes-Renner ratio is expressed in terms of low-energy pi-pi observables in...
We analyze the contribution of the η′(958) meson in the first two non-trivial moments of the QCD top...
The mass spectrum of $\pi^+$ and $\rho^+$ mesons in the presence of a static uniform magnetic field ...