论文标题
Schwarzschild时空中的声学黑洞:准正常模式,类似的鹰辐射和阴影
Acoustic black hole in Schwarzschild spacetime: quasi-normal modes, analogous Hawking radiation and shadows
论文作者
论文摘要
在过去的几十年中,已广泛研究了在Minkowski时空中构建的声学黑洞的各种特性。最近,提出了一般时空的声学黑洞。在本文中,我们首先研究了Schwarzschild时空中“弯曲”声性黑洞的基本特征,包括准正常模式,灰色体模式和类似的鹰辐射。我们发现,准正常模式的信号比Schwarzschild黑洞的信号弱。此外,随着调谐参数的增加,准正常频率方法的正真实部分和负想象部分都可以到达地平轴,但是它们不会更改符号。这意味着所有扰动可能会消失,并且在这些扰动下系统稳定。由于较大的调整参数抑制了有效的潜在屏障,因此它增强了灰色因子。鹰辐射的能量发射速率由于鹰温度的非单调性而不会单调增加。最后,作为第一次尝试,我们研究了声学黑洞阴影。随着调谐参数的增加,声阴影的半径变得更大,因为相关的声学范围和声学球都变得更大。我们的研究可以帮助我们进一步了解黑洞的近地平线几何特征。我们还希望在不久的将来可以通过实验检测我们的观察结果。
Various properties of acoustic black holes constructed in Minkowski spacetime have been widely studied in the past decades. Recently the acoustic black holes in general spacetime were proposed . In this paper, we first investigate the basic characteristics of `curved' acoustic black hole in Schwarzschild spacetime, including the quasi-normal modes, grey-body factor and analogous Hawking radiation. We find that the signal of quasi-normal mode is weaker than that of Schwarzschild black hole. Moreover, as the tuning parameter increases, both the positive real part and negative imaginal part of the quasi-normal frequency approach to the horizonal axis, but they will not change sign. This means that all the perturbations could die off and the system is stable under those perturbations. Since the larger tuning parameter suppresses the effective potential barrier, so it enhances the grey-body factor. The energy emission rate of Hawking radiation does not monotonically increase of the tuning parameter because of the non-monotonicity of the Hawking temperature. Finally, as a first attempt, we study the acoustic black hole shadow. The radius of acoustic shadow becomes larger as the tuning parameter increases, because both the related acoustic horizon and the acoustic sphere become larger. Our studies could help us to further understand the near horizon geometrical features of the black hole. We also expect that our observations could be detected experimentally in the near future.