Publications (13)
Baryonic Vortex Phase and Magnetic Field Generation in QCD with Isospin and Baryon Chemical Potentials
Zebin Qiu, Muneto Nitta
We propose a novel baryonic vortex phase in low energy dense QCD with finite baryon and isospin chemical potentials. It is known that the homogeneous charged pion condensate emerge…
Quasicrystals in QCD
Zebin Qiu, Muneto Nitta
We study the ground state of the low energy dense QCD with the assumption of chiral condensates of quarks. Under an external magnetic field, mesons could form soliton lattices via…
Anomalous Casimir effect in axion electrodynamics
Kenji Fukushima, Shota Imaki, Zebin Qiu
We study the Casimir effect in axion electrodynamics. A finite -term affects the energy dispersion relation of photon if is time and/or space dependent. We focus on a spec…
Eddy magnetization from the chiral Barnett effect
Kenji Fukushima, Shi Pu, Zebin Qiu
We discuss the spin, the angular momentum, and the magnetic moment of rotating chiral fermions using a kinetic theory. We find that, in addition to the chiral vortical contribution…
QCD phase diagram in a magnetic field with baryon and isospin chemical potentials
Yu Hamada, Muneto Nitta, Zebin Qiu
Based on the chiral perturbation theory at the leading order, we present the phase diagram of low-energy QCD in a magnetic field at finite baryon and isospin chemical potentials. T…
Chiral torsional effect with finite temperature, density and curvature
Shota Imaki, Zebin Qiu
We scrutinize the novel chiral transport phenomenon driven by spacetime torsion, namely the chiral torsional effect (CTE). We calculate the torsion-induced chiral currents with fin…
Skyrmions in a magnetic field and domain wall formation in dense nuclear matter
Shi Chen, Kenji Fukushima, Zebin Qiu
We elucidate magnetic effects in the skyrmion system to probe into the dense nuclear matter. We find a deformed dipole structure of a baryon induced by a magnetic field. We…
Phase Boundary of Nuclear Matter in Magnetic Field
Yuki Amari, Muneto Nitta, Zebin Qiu
Nuclear matter with a strong magnetic field is prevalent inside neutron stars and heavy-ion collisions. In a sufficiently large magnetic field the ground state is either a chiral s…
Fermionic domain-wall Skyrmions of QCD in a magnetic field
Patrick Copinger, Minoru Eto, Muneto Nitta +1
The ground state of low-energy QCD matter in strong magnetic fields is either a chiral soliton lattice (CSL), a periodic array of neutral pion domain walls (chiral solitons) perpen…
Baryons as linked vortices in QCD matter with isospin asymmetry
Yu Hamada, Muneto Nitta, Zebin Qiu
We investigate a baryonic structure in low-energy QCD via a model-independent way using the chiral perturbation theory at the leading order, in the presence of the baryon chemical…
Magnetic enhancement of baryon confinement modeled via a deformed Skyrmion
Shi Chen, Kenji Fukushima, Zebin Qiu
We discuss the baryon properties under a strong magnetic field. We adopt the Skyrme model and calculate the magnetic field dependence of the mass and the pressure distribution in t…
Baryonic vortices in rotating nuclear matter
Kazuya Mameda, Muneto Nitta, Zebin Qiu
We investigate baryonic vortices as topological excitations in rotating nuclear matter within the framework of chiral perturbation theory. We identify two distinct configurations:…
On electrodynamics of chiral matter
Zebin Qiu, Gaoqing Cao, Xu-Guang Huang
Many-body systems with chiral fermions can exhibit novel transport phenomena that violate parity and time reversal symmetries, such as the chiral magnetic effect, the anomalous Hal…