Spontaneous magnetization under a pseudovector interaction between quarks in high density quark matter
arXiv:1801.03633 · doi:10.1142/S0218301318500283
Abstract
Spontaneous magnetization and magnetic susceptibility originated from the pseudovector-type four-point interaction between quarks are calculated in quark matter with zero temperature and finite quark chemical potential by using the two-flavor Nambu-Jona-Lasinio model. It is shown that both the chiral condensate and spin polarized condensate coexist in a narrow region of the quark chemical potential. And then, it is also shown that, in this narrow region, the spontaneous magnetization appears. Also, the magnetic susceptibility due to quarks with the positive energy is evaluated in the spin polarized phase.
15 pages, 2 figures
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Cited by in corpus (9)
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- Effects of quark anomalous magnetic moment on the thermodynamical properties and mesonic excitations of magnetized hot and dense matter in PNJL model
- Spin polarized phases in strongly interacting matter: interplay between axial-vector and tensor mean fields
- Spin polarizations under a pseudovector interaction between quarks with the Kobayashi-Maskawa-'t Hooft term in high density quark matter
- Spin Polarization and Chiral Condensation in 2+1 flavor Nambu-Jona-Lasinio model at finite temperature and baryon chemical potential
- Hybrid stars from a three-flavor NJL model with two kinds of tensor condensates
- Non-zero tensor condensates in cold quark matter within the three-flavor Nambu-Jona-Lasinio model with the Kobayashi-Maskawa-'t Hooft interaction
- Investigations of symmetry breakings by multiple condensates on exotic chiral condensed phases
- Axial-Vector and Tensor Spin Polarization and Chiral Restoration in Quark Matter