PaperPanorama

arXiv:1701.00895·v1·High Energy Astrophysical Phenomena

From microphysics to dynamics of magnetars

Armen Sedrakian · Xu-Guang Huang · Monika Sinha · John W. Clark

Abstract

MeV-scale magnetic fields in the interiors of magnetars suppress the pairing of neutrons and protons in the -wave state. In the case of a neutron condensate the suppression is the consequence of the Pauli-paramagnetism of the neutron gas, i.e., the alignment of the neutron spins along the magnetic field. The proton -wave pairing is suppressed because of the Landau diamagnetic currents of protons induced by the field. The Ginzburg-Landau and BCS theories of the critical magnetic fields for unpairing are reviewed. The macrophysical implications of the suppression (unpairing) of the condensates are discussed for the rotational crust-core coupling in magnetars and the neutrino-dominated cooling era of their thermal evolution.

Comments: 10 pages, 4 figures, Proceedings of "Compact Stars in the QCD phase diagram V", 23-27 May 2016 GSSI and LNGS, L'Aquila, Italy

Citation historyopen in Citation History ↗