首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Effect of an external magnetic field on particle acceleration by a rotating black hole surrounded with quintessential energy
【24h】

Effect of an external magnetic field on particle acceleration by a rotating black hole surrounded with quintessential energy

机译:外部磁场对典型能量围绕旋转黑洞粒子加速的影响

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

We investigate particle motion and collisions in the vicinity of rotating black holes immersed in combined cosmological quintessential scalar field and external magnetic field. The quintessential dark-energy field governing the spacetime structure is characterized by the quintessential state parameter omega(q) is an element of(-1;-1/3) characterizing its equation of state, and the quintessential field-intensity parameter c determining the static radius where the black hole attraction is just balanced by the quintessential repulsion. The magnetic field is assumed to be test field that is uniform close to the static radius, where the spacetime is nearly flat, being characterized by strength B there. Deformations of the test magnetic field in vicinity of the black hole, caused by the Ricci non-flat spacetime structure are determined. General expression of the center-of-mass energy of the colliding charged or uncharged particles near the black hole is given and discussed in several special cases. In the case of nonrotating black holes, we discuss collisions of two particles freely falling from vicinity of the static radius, or one such a particle colliding with charged particle revolving at the innermost stable circular orbit. In the case of rotating black holes, we discuss briefly particles falling in the equatorial plane and colliding in close vicinity of the black hole horizon, concentrating attention to the interplay of the effects of the quintessential field and the external magnetic field. We demonstrate that the ultra-high center-of-mass energy can be obtained for black holes placed in an external magnetic field for an infinitesimally small quintessential field-intensity parameter c; the center-of-mass energy decreases if the quintessential field-intensity parameter c increases.
机译:我们在沉浸在组合的宇宙学典型标量标量场和外部磁场中的旋转黑洞附近调查颗粒运动和碰撞。针对空间结构的典型暗能场的特征在于典型状态参数ω(q)是表征其状态方程的(-1; -1/3)的元素,并且典型的场强参数c确定黑洞吸引力的静态半径恰好被典型的排斥力平衡。假设磁场是靠近静态半径的均匀的测试场,其中间隔几乎是平坦的,其特征在于存在强度B。确定由RICCI非平板空间结构引起的黑洞附近的测试磁场的变形。在几种特殊情况下给出并讨论了黑洞附近的碰撞带电或不带电颗粒的质量核心能量的一般表达。在非凝结黑洞的情况下,我们讨论两个颗粒的碰撞从静态半径附近自由地落下,或者与在最内稳定的圆形轨道上旋转的带电粒子碰撞的一个这样的颗粒。在旋转黑洞的情况下,我们将简要讨论落入赤道平面的颗粒,并在黑洞地平线附近碰撞,集中注意典型的典型场和外部磁场的效果的相互作用。我们证明,可以获得超高的质量能量,可以在用于无限小型典型场强参数C中放置在外部磁场中的黑洞;如果典型的场强度参数C增加,则质量中心减少。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号