论文标题
旋转黑洞周围的自我相互作用轴支球场的绝热演变
Adiabatic evolution of the self-interacting axion field around rotating black holes
论文作者
论文摘要
由弦理论激发的超光轴场在旋转黑洞周围通过超级不稳定性形成大型冷凝物(轴云)。由于轴云而引起的几种影响,例如黑洞的旋转和单色重力波的发射,打开了一个新的窗口,通过天体物理观测来寻找轴。当考虑斧头的自我交流时,云的演变会显着改变,并且可能发生称为Bosenova的爆炸现象。因此,有必要理解自我相互作用云的精确演变,以通过天体物理观测来检测轴子。在本文中,我们提出了一种新方法,以跟踪采用绝热近似的自我相互作用轴云增长的整个过程。我们强调的是,我们的方法既不依赖于非相关性近似,也不依赖于自我相互作用的扰动治疗,这通常用于文献中。我们的主要发现是,在强烈的自我相互作用状态下,云的演变取决于轴突和黑洞之间的重力耦合的强度。对于大型耦合,云演变成准平稳状态,在该状态下,超级能量增益与通过自我相互作用的能量耗散到无穷大。另一方面,当一个人减小耦合的大小时,云在某些能量下变得不稳定,这将被解释为Bosenova的发作。
Ultra light axion fields, motivated by the string theory, form a large condensate (axion cloud) around rotating black holes through superradiant instability. Several effects due to the axion cloud, such as the spin-down of black holes and the emission of monochromatic gravitational waves, open a new window to search for axions by astrophysical observations. When the axion self-interaction is considered, the evolution of cloud is altered significantly, and an explosive phenomenon called bosenova can happen. Thus, it is necessary to understand the precise evolution of self-interacting clouds for the detection of axions by astrophysical observations. In this paper, we propose a new method to track the whole process of the growth of self-interacting axion clouds employing the adiabatic approximation. We emphasize that our method relies neither on the non-relativistic approximation nor on perturbative treatment of the self-interaction, which is often used in literature. Our main finding is that the evolution of cloud in the strongly self-interacting regime depends on the strength of the gravitational coupling between the axion and the black hole. For a large coupling, the cloud evolves into a quasi-stationary state where the superradiant energy gain is balanced with the energy dissipation to infinity by the self-interaction. On the other hand, when one decreases the size of coupling, clouds become unstable at some energy, which would be interpreted as the onset of bosenova.