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Dynamics of particles around a Schwarzschild-like black hole in the presence of quintessence and magnetic field

机译:在典型现象和磁场作用下类似Schwarzschild形黑洞的粒子动力学

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We have investigated the dynamics of a neutral and a charged particle around a static and spherically symmetric black hole in the presence of quintessence matter and external magnetic field. We explore the conditions under which the particle moving around the black hole could escape to infinity after colliding with another particle. The innermost stable circular orbit (ISCO) for the particles are studied in detail. Mainly the dependence of ISCO on dark energy and on the presence of external magnetic field in the vicinity of black hole is discussed. By using the Lyapunov exponent, we compare the stabilities of the orbits of the particles in the presence and absence of dark energy and magnetic field. The expressions for the center of mass energies of the colliding particles near the horizon of the black hole are derived. The effective force on the particle due to dark energy and magnetic field in the vicinity of black hole is also discussed.
机译:我们研究了在存在典型物质和外部磁场的情况下,在静态和球形对称黑洞周围的中性粒子和带电粒子的动力学。我们探索了在黑洞周围移动的粒子与另一个粒子碰撞后可以逃逸到无穷大的条件。详细研究了粒子的最里面的稳定圆形轨道(ISCO)。主要讨论了ISCO对暗能量和黑洞附近外部磁场的存在的依赖性。通过使用李雅普诺夫指数,我们比较了存在和不存在暗能量和磁场的情况下粒子轨道的稳定性。推导了黑洞视界附近碰撞粒子质能中心的表达式。还讨论了黑洞附近暗能量和磁场对粒子的有效力。

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