论文标题
用各向异性物质场旋转黑洞作为粒子加速器
Rotating Black Hole with an Anisotropic Matter Field as a Particle Accelerator
论文作者
论文摘要
最近,提出了一个被物质场包围的旋转紧凑型体的爱因斯坦方程的广义解,这是带有各向异性物质的Kerr-Newman时空。该溶液具有额外的头发,以及常规质量,电荷和自旋,这是由于各向异性物质的负径向压力引起的。在本文中,我们表明,在其在Ergo区域的重力场中两个通用粒子碰撞时,这种新的黑洞可以充当粒子加速器。颗粒的质量能量中心在极端黑洞的事件地平线附近芽到任意高价值。碰撞发生的物理条件是通过研究地平线结构和圆形粒子运动获得的。从天体物理学的角度来看,结果很有趣。
Recently, a generalised solution for Einstein equations of a rotating compact body, surrounded by matter field was proposed, which is the Kerr-Newman spacetime with an anisotropic matter. The solution possesses an additional hair, along with the conventional mass, charge and spin, which arises from the negative radial pressure of the anisotropic matter. In this article we show that, this new class of black holes can act as a particle accelerator during the collision of two generic particles in its gravitational field in the ergo-region. The centre of mass energy of the particles shoots to arbitrary high value in the vicinity of event horizon for the extremal black hole. The physical conditions for the collision to take place are obtained by studying the horizon structure and circular particle motion. The results are interesting from astrophysical perspective.