TY - JOUR
T1 - Axisymmetric magnetic modes of neutron stars having mixed poloidal and toroidal magnetic fields
AU - Lee, Umin
N1 - Publisher Copyright:
© 2018 The Author(s).
PY - 2018/5/21
Y1 - 2018/5/21
N2 - We calculate axisymmetric magnetic modes of a neutron star possessing a mixed poloidal and toroidal magnetic field, where the toroidal field is assumed to be proportional to a dimensionless parameter ζ 0. Here, we assume an isentropic structure for the neutron star and consider no effects of rotation. Ignoring the equilibrium deformation due to the magnetic field, we employ a polytrope of the index n = 1 as the background model for our modal analyses. For the mixed poloidal and toroidal magnetic field with ζ0 ≠ 0 axisymmetric spheroidal and toroidal modes are coupled.We compute axisymmetric spheroidal and toroidal magnetic modes as a function of the parameter ζ 0 froζ 0 to ~1 for the surface field strengths BS = 1014 G and 1015 G. We find that the frequency ω of the magnetic modes decreases with increasing ζ 0. We also find that the frequency of the spheroidal magnetic modes is almost exactly proportional to BS for ζ 0 ≲ 1 but that this proportionality holds only when ζ 0 ≪ 1 for the toroidal magnetic modes. The wave patterns of the spheroidal magnetic modes and toroidal magnetic modes are not strongly affected by the coupling so long as ζ 0 ≲ 1.We find no unstable modes having ω2 ζ 0.
AB - We calculate axisymmetric magnetic modes of a neutron star possessing a mixed poloidal and toroidal magnetic field, where the toroidal field is assumed to be proportional to a dimensionless parameter ζ 0. Here, we assume an isentropic structure for the neutron star and consider no effects of rotation. Ignoring the equilibrium deformation due to the magnetic field, we employ a polytrope of the index n = 1 as the background model for our modal analyses. For the mixed poloidal and toroidal magnetic field with ζ0 ≠ 0 axisymmetric spheroidal and toroidal modes are coupled.We compute axisymmetric spheroidal and toroidal magnetic modes as a function of the parameter ζ 0 froζ 0 to ~1 for the surface field strengths BS = 1014 G and 1015 G. We find that the frequency ω of the magnetic modes decreases with increasing ζ 0. We also find that the frequency of the spheroidal magnetic modes is almost exactly proportional to BS for ζ 0 ≲ 1 but that this proportionality holds only when ζ 0 ≪ 1 for the toroidal magnetic modes. The wave patterns of the spheroidal magnetic modes and toroidal magnetic modes are not strongly affected by the coupling so long as ζ 0 ≲ 1.We find no unstable modes having ω2 ζ 0.
KW - Stars: magnetars
KW - Stars: magnetic field
KW - Stars: neutron
KW - Stars: oscillations
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U2 - 10.1093/MNRAS/STY406
DO - 10.1093/MNRAS/STY406
M3 - Article
AN - SCOPUS:85052156832
SN - 0035-8711
VL - 476
SP - 3399
EP - 3414
JO - Monthly Notices of the Royal Astronomical Society
JF - Monthly Notices of the Royal Astronomical Society
IS - 3
ER -