论文标题
在非渐近平坦的空间中旋转颗粒的运动
Motion of spinning particles in non asymptotically flat spacetimes
论文作者
论文摘要
当人们认为存在宇宙常数或真空能量的宇宙学环境时,可以将渐近天体物理体的渐近平坦度的假设视为近似值。在此框架中,我们研究了静态,球形对称和渐近非平台中旋转颗粒的运动,并具有排斥性的宇宙学真空能和典型场的运动。由于重力吸引力和宇宙学排斥的综合作用,允许稳定圆形轨道的区域受到最内向和最外面稳定的圆形轨道的限制。我们表明,考虑到测试颗粒的自旋可能会扩大或收缩允许稳定的圆形轨道的区域,具体取决于旋转是与颗粒的角动量共旋转还是反向旋转。
The assumption of asymptotic flatness for isolated astrophysical bodies may be considered an approximation when one considers a cosmological context where a cosmological constant or vacuum energy is present. In this framework we study the motion of spinning particles in static, spherically symmetric and asymptotically non-flat spacetimes with repulsive cosmological vacuum energy and quintessential field. Due to the combined effects of gravitational attraction and cosmological repulsion, the region where stable circular orbits are allowed is restricted by an innermost and an outermost stable circular orbits. We show that taking into account the spin of test particles may enlarge or shrink the region of allowed stable circular orbits depending on whether the spin is co-rotating or counter-rotating with the angular momentum of the particles.