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Plasma magnetosphere of rotating magnetized neutron star in the braneworld

机译:Braneworld中旋转的磁化中子星的等离子体磁层

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Plasma magnetosphere surrounding rotating magnetized neutron star in the braneworld has been studied. For the simplicity of calculations Goldreich-Julian charge density is analyzed for the aligned neutron star with zero inclination between magnetic field and rotation axis. From the system of Maxwell equations in spacetime of slowly rotating star in braneworld, second-order differential equation for electrostatic potential is derived. Analytical solution of this equation indicates the general relativistic modification of an accelerating electric field and charge density along the open field lines by brane tension. The implication of this effect to the magnetospheric energy loss problem is underlined. It was found that for initially zero potential and field on the surface of a neutron star, the amplitude of the plasma mode created by Goldreich-Julian charge density will increase in the presence of the negative brane charge. Finally we derive the equations of motion of test particles in magnetosphere of slowly rotating star in the braneworld. Then we analyze particle motion in the polar cap and show that brane tension can significantly change conditions for particle acceleration in the polar cap region of the neutron star.
机译:研究了Braneworld中围绕旋转磁化中子星的等离子体磁层。为了简化计算,分析了对准的中子星的Goldreich-Julian电荷密度,磁场和旋转轴之间的倾斜度为零。从Braneworld中慢速旋转恒星时空的Maxwell方程组中,得出静电势的二阶微分方程。该方程的解析解表明,通过拉力,沿开放磁场线加速电场和电荷密度的一般相对论修正。强调了这种效应对磁层能量损失问题的影响。已经发现,对于中子星表面最初的零电势和电场,在存在负的糠麸电荷的情况下,由Goldreich-Julian电荷密度产生的等离子体模式的振幅将增加。最后,我们推导了Braneworld中缓慢旋转的恒星的磁层中测试粒子的运动方程。然后,我们分析了极帽中的粒子运动,并表明,麸皮张力可以显着改变中子星极帽区域中粒子加速的条件。

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