论文标题

部分可观测时空混沌系统的无模型预测

Impact of multiple modes on the evolution of self-interacting axion condensate around rotating black holes

论文作者

Omiya, Hidetoshi, Takahashi, Takuya, Tanaka, Takahiro, Yoshino, Hirotaka

论文摘要

超轻质颗粒(例如轴)通过超级不稳定性在高度旋转的黑洞周围形成宏观冷凝物。由于其宏观的性质,冷凝水打开了通过重力波观测检测轴突的可能性。但是,必须以实际检测而知道冷凝物的确切演变。对于将来的观察,我们从数值上研究了自我交互的影响,尤其是不同模式之间的相互作用对冷凝水的进化。首先,我们专注于凝结物以最小可能的角量子数开头的情况。在这种情况下,我们执行非线性计算,并表明该模式相互作用引起的耗散足够强,即使次级云始于量子波动。我们的结果表明,在这种情况下,爆炸性现象(例如Bosenova)不会发生。我们还表明,冷凝物沉降到主要由两种模式组成的准平稳状态,一种是最小的角度量子数,超级量子不稳定性发生,另一个具有相邻的高角度量子数。当冷凝水从较高的角量子数的优势开始时,我们还研究了情况。我们表明,对于小重力耦合而不会发生由模式耦合引起的耗散过程。因此,在这种情况下可能会发生Bosenova。

Ultra-light particles, such as axions, form a macroscopic condensate around a highly spinning black hole by the superradiant instability. Due to its macroscopic nature, the condensate opens the possibility of detecting the axion through gravitational wave observations. However, the precise evolution of the condensate must be known for the actual detection. For future observation, we numerically study the influence of the self-interaction, especially interaction between different modes, on the evolution of the condensate in detail. First, we focus on the case when condensate starts with the smallest possible angular quantum number. For this case, we perform the non-linear calculation and show that the dissipation induced by the mode interaction is strong enough to saturate the superradiant instability, even if the secondary cloud starts with quantum fluctuations. Our result indicates that explosive phenomena such as bosenova do not occur in this case. We also show that the condensate settles to a quasi-stationary state mainly composed of two modes, one with the smallest angular quantum number for which the superradiant instability occurs and the other with the adjacent higher angular quantum number. We also study the case when the condensate starts with the dominance of the higher angular quantum number. We show that the dissipation process induced by the mode coupling does not occur for small gravitational coupling. Therefore, bosenova might occur in this case.

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