论文标题

引力波回声由点质量下降到黑洞

Gravitational wave echoes induced by a point mass plunging to a black hole

论文作者

Sago, Norichika, Tanaka, Takahiro

论文摘要

最近,提出了在Ligo观察到的二进制黑洞合并之后的数据流中检测引力波回声的可能性。在这一建议的激励下,我们在以前的工作中基于黑洞扰动介绍了回声模板。在那里,我们假设导致回声的入射波类似于直接逃到渐近无穷大的那些。在这项工作中,为了在不使用入射波的幼稚假设的情况下提取更多可靠的信息,我们研究了由点质量浸入Kerr黑洞引起的重力波。我们解决了在无穷大的纯粹传出边界条件下以及地平线附近的假设反射边界条件下的线性扰动方程。我们发现,高速度不稳定性阈值的低频成分受到高度抑制,这与先前分析中假定的入射波形一致。我们还发现,如果我们独立于频率采用完美的反射边界条件,则高频模式激发明显大于先前分析中使用的激发。当我们使用一个简单的模板,其中与直接排放到无穷大的波形随着幅度的降低重复时,预期信号和模板之间的相关性很快就会降低。

Recently, the possibility of detecting gravitational wave echoes in the data stream subsequent to the binary black hole mergers observed by LIGO was suggested. Motivated by this suggestion, we presented templates of echoes based on black hole perturbations in our previous work. There, we assumed that the incident waves resulting in echoes are similar to the ones that directly escape to the asymptotic infinity. In this work, to extract more reliable information on the waveform of echoes without using the naive assumption on the incident waves, we investigate gravitational waves induced by a point mass plunging into a Kerr black hole. We solve the linear perturbation equation sourced by the plunging mass under the purely outgoing boundary condition at infinity and a hypothetical reflection boundary condition near the horizon. We find that the low frequency component below the threshold of the super-radiant instability is highly suppressed, which is consistent with the incident waveform assumed in the previous analysis. We also find that the high frequency mode excitation is significantly larger than the one used in the previous analysis, if we adopt the perfectly reflective boundary condition independently of the frequency. When we use a simple template in which the same waveform as the direct emissions to infinity is repeated with the decreasing amplitude, the correlation between the expected signal and the template turns out to decrease very rapidly.

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