论文标题
旋转黑孔星团的热力学
The Thermodynamics of Rotating Black-Hole Star Clusters
论文作者
论文摘要
使用重力相互作用的轨道椭圆形的Touma-Tremaine热力学研究了超级质量黑洞附近的旋转星团。描述了一种简单的数值程序,用于计算热力学平衡状态,以在质量和半轴轴上任意分布恒星。对于非旋转簇,在低正温度下的自发对称性破坏和热力学的分解已被严格证明。旋转通过第二温度的参数引入。都发现了轴向对称和偏斜的旋转平衡。通过两个温度比给出的角速度的偏斜平衡序列与角速度。仙女座星系核中的偏心恒星盘可能是旋转黑洞星团偏斜的热力学平衡的一个例子。恒星质量的黑洞在破碎的对称星形簇中占据高度偏心的轨道,并在旋转的星形簇中形成扁平的圆盘状构型。它们被旋转的旋转旋转框架旋转的轨道所吸引。在球形簇中,如果温度为阴性,则恒星质量黑洞的轨道比较轻的恒星的轨道明显更偏心,如果温度为阳性,则更圆。最后,我们注意到,行星,彗星,暗物质颗粒和其他光体倾向于形成一个球形对称的非旋转子簇,即使他们的宿主群在旋转并且旋转并且不稳定。
Rotating star clusters near supermassive black holes are studied using Touma-Tremaine thermodynamics of gravitationally interacting orbital ellipses. A simple numerical procedure for calculating thermodynamic equilibrium states for an arbitrary distribution of stars over masses and semimajor axes is described. Spontaneous symmetry breaking and breakdown of thermodynamics at low positive temperatures are rigorously proven for non-rotating clusters. Rotation is introduced through a second temperature-like parameter. Both axially symmetric and lopsided rotational equilibria are found; the lopsided equilibria precess with the angular velocity that is given by the ratio of the two temperatures. Eccentric stellar disc in the nucleus of Andromeda galaxy may be an example of a lopsided thermodynamic equilibrium of a rotating black hole star cluster. Stellar-mass black holes occupy highly eccentric orbits in broken-symmetry star clusters, and form flattened disc-like configurations in rotating star clusters. They are attracted to orbits that are stationary in the frame of reference rotating with the angular velocity of the cluster. In spherical clusters, stellar-mass black holes' orbits are significantly more eccentric than those of the lighter stars if the temperature is negative, and more circular if the temperature is positive. Finally we note that planets, comets, dark matter particles and other light bodies tend to form a spherically symmetric non-rotating sub-cluster with maximum-entropy eccentricity distribution $\mathscr{P}(e)=2e$, even if their host cluster is rotating and lopsided.