Evolution of crustal magnetic fields in isolated neutron stars: Combined effects of cooling and curvature of spacetime

被引:10
作者
Sengupta, S
机构
关键词
relativity; stars : interiors; stars : magnetic fields; stars : neutron;
D O I
10.1086/305826
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The ohmic decay of magnetic fields confined within the crust of neutron stars is considered by incorporating both the effect of neutron star cooling and the effect of spacetime curvature produced by the intense gravitational held of the star. For this purpose a stationary and static gravitational field has been considered with the standard as well as the accelerated cooling models of neutron stars. It is shown that general relativistic effect reduces the magnetic field decay rate substantially. At the late stage of evolution when the field decay is mainly determined by the impurity-electron scattering, the effect of spacetime curvature suppresses the role of the impurity content significantly and reduces the decay rate by more than an order of magnitude. Even with a high impurity content the decay rate is too low to be of observational interest if the accelerated cooling model along with the effect of spacetime curvature is taken into account. It is, therefore, pointed out that if a decrease in the magnetic field strength by more than 2 orders of magnitude from its initial value is detected by observation then the existence of quark in the core of the neutron star would possibly be ruled out.
引用
收藏
页码:792 / 796
页数:5
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