Special relativistic magnetohydrodynamic simulation of two-component outflow powered by magnetic explosion on compact stars

被引:0
作者
Matsumoto, Jin [1 ]
Masada, Youhei
Asano, Eiji [1 ]
Shibata, Kazunari [1 ]
机构
[1] Kyoto Univ, Kwasan Observ, Kyoto, Japan
来源
ADVANCES IN PLASMA ASTROPHYSICS | 2011年 / 274期
关键词
relativistic; MHD; neutron stars; numerical; NEUTRON-STARS; FIELD;
D O I
10.1017/S1743921311006971
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The nonlinear dynamics of the outflow driven by magnetic explosion on the surface of compact object is investigated through special relativistic magnetohydrodynamic simulations. We adopt, as an initial equilibrium state, a spherical stellar object embedded in the hydrostatic plasma which has a density rho(r) proportional to r(-alpha) and is threaded by a dipole magnetic field. The injection of magnetic energy at the surface of compact star breaks the dynamical equilibrium and triggers two-component outflow. At the early evolutionary stage, the magnetic pressure increases rapidly in time around the stellar surface, initiating a magnetically driven outflow. Then it excites a strong forward shock, shock driven outflow. The expansion velocity of the magnetically driven outflow is characterized by the Alfven velocity on the stellar surface, and follows a simple scaling relation upsilon(mag) proportional to upsilon(A) (1/2). When the initial density profile declines steeply with radius, the strong shock is accelerated self-similarly to relativistic velocity ahead of the magnetically driven component. We find that the evolution of the strong forward shock can be described by a self-similar relation Gamma(sh) proportional to r(sh), where Gamma(sh) is the Lorentz factor of the plasma measured at the shock surface r(sh). It should be stressed that the pure hydrodynamic process is responsible for the acceleration of the shock driven outflow. Our two-component outflow model, which is the natural outcome of the magnetic explosion, would deepen the understanding of the magnetic active phenomena on various magnetized stellar objects.
引用
收藏
页码:220 / 223
页数:4
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