论文标题
针对小扰动的时间域观测中基本准模式的稳定性
Stability of the fundamental quasinormal mode in time-domain observations against small perturbations
论文作者
论文摘要
带有重力波的黑洞光谱是测量天体物理黑洞质量和自旋并测试其Kerr性质的重要工具。下一代基于空间和空间的探测器将观察具有较高信噪比的二进制黑洞合并,并常规执行光谱。最近显示的是,由于环境影响(“跳蚤”)的造成的小扰动,黑洞外部(“大象”)的有效潜在的统治重力生成和传播可能会导致黑洞的准级频谱的任意发生巨大变化,包括预期的信号,包括预期的信号。这就提出了一个重要的问题:黑洞光谱计划是否适合扰动?我们阐明了电势小扰动下时间域信号的物理行为,并且我们表明,迅速响铃信号中基本模式的幅度的变化在参数上很小。这意味着从可观察到的时间域信号中提取的基本准标准模式对于小扰动是稳定的。泛音的稳定性值得进一步研究。
Black hole spectroscopy with gravitational waves is an important tool to measure the mass and spin of astrophysical black holes and to test their Kerr nature. Next-generation ground- and space-based detectors will observe binary black hole mergers with large signal-to-noise ratios and perform spectroscopy routinely. It was recently shown that small perturbations due, e.g., to environmental effects (the "flea") to the effective potential governing gravitational-wave generation and propagation in black hole exteriors (the "elephant") can lead to arbitrarily large changes in the black hole's quasinormal spectrum, including the fundamental mode, which is expected to dominate the observed signal. This raises an important question: is the black hole spectroscopy program robust against perturbations? We clarify the physical behavior of time-domain signals under small perturbations in the potential, and we show that changes in the amplitude of the fundamental mode in the prompt ringdown signal are parametrically small. This implies that the fundamental quasinormal mode extracted from the observable time-domain signal is stable against small perturbations. The stability of overtones deserves further investigation.