论文标题

通过模拟揭示重力波的波性质

Unveiling the wave nature of gravitational-waves with simulations

论文作者

He, Jian-hua

论文摘要

我们介绍了引力波(GWS)的第一个数值模拟(GWS)通过3-D空间中紧凑型物体产生的电位井,其逼真的源波形来自两个黑洞合并的数值相对性。与以前的工作不同,我们的分析集中在时间域上,其中GWS的传播是一个良好的“初始值”问题,对于数学和物理学中严格扎根的双曲线方程。基于这些模拟,我们首次在现实的3-D空间中进行了研究,GWS的波性质如何影响潜在孔中GW的速度和波形。我们发现,由于衍射和波前几何影响的影响,GWS的行驶速度比几何限制的夏皮罗时间延迟的预测快。由于GWS的波速与GWS的局部和波前几何形状密切相关,GWS的局部性和波前几何形状本质上很难在频域中解决,因此我们在时间域中的分析提供了基于固体物理学的第一个强大分析。此外,我们还首次研究了事件与散射波(入射波的“回声”)之间的干扰。我们发现,这种干扰使总镜头波形与原始事件的总波形截然不同,不仅在振幅中,而且在相位和模式中,尤其是对于两个后孔合并附近的信号。

We present the first numerical simulations of gravitational waves (GWs) passing through a potential well generated by a compact object in 3-D space, with a realistic source waveform derived from numerical relativity for the merger of two black holes. Unlike the previous work, our analyses focus on the time-domain, in which the propagation of GWs is a well-posed "initial-value" problem for the hyperbolic equations with rigorous rooting in mathematics and physics. Based on these simulations, we investigate for the first time in realistic 3-D space how the wave nature of GWs affects the speed and waveform of GWs in a potential well. We find that GWs travel faster than the prediction of the Shapiro time-delay in the geometric limit due to the effects of diffraction and wavefront geometry. As the wave speed of GWs is closely related to the locality and wavefront geometry of GWs, which are inherently difficult to be addressed in the frequency-domain, our analyses in the time-domain, therefore, provide the first robust analyses to date on this issue based on solid physics. Moreover, we also investigate, for the first time, the interference between the incident and the scattered waves (the "echoes" of the incident waves). We find that such interference makes the total lensed waveforms dramatically different from those of the original incident ones not only in the amplitude but also in the phase and pattern, especially for signals near the merger of the two back holes.

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