论文标题
淹没岛屿和重力类似物的波动焦点
Wave focusing by submerged islands and gravitational analogues
论文作者
论文摘要
我们研究了在深度变化的液体中传播的水波,这是由于观察到海洋中淹没的岛屿作用是有效的透镜,从而增加了海啸波的振幅和破坏力,在焦点附近。我们表明,高度(与水深度相比)的岛屿会导致其附近的重点,并产生了尖峰或蝴蝶类型的苛刻。我们强调了相似性和差异与中子恒星(高频)重力波的聚焦。在线性方案中,通过对岛 - 流体系统的有效空间描述进行比较。然后将此描述用于实际用途:我们通过沿有效指标的光线求解Raychaudhuri方程(一个传输方程)来识别苛刻。接下来,使用数值模拟和分析技术(包括艾科(Eikonal)近似及其概括以高斯束近似的形式,详细检查了岛流体散射过程(即〜偏转角,相移,散射幅度)。我们表明这些技术捕获了模拟的关键特征。最后,我们将艾科纳尔近似值扩展到分散式,表明基本特征在分散设置中是可靠的。这为在受控的实验室设置中的未来探索铺平了道路。
We study water waves propagating over a smooth obstacle in a fluid of varying depth, motivated by the observation that submerged islands in the ocean act as effective lenses that increase the amplitude and destructive power of tsunami waves near focal points. We show that islands of substantial height (compared to the water depth) lead to strong focusing in their immediate vicinity, and generate caustics of either cusp or butterfly type. We highlight similarities and differences with focusing of (high-frequency) gravitational waves by a neutron star. In the linear regime, the comparison is made precise through an effective-spacetime description of the island-fluid system. This description is then put to practical use: we identify caustics by solving the Raychaudhuri equation (a transport equation) along rays of the effective metric. Next, the island-fluid scattering processes are examined in detail (i.e.~deflection angle, phase shifts, scattering amplitudes) using numerical simulations and analytical techniques, including the eikonal approximation and its generalisation in the form of the Gaussian beam approximation. We show that the techniques capture the key features of the simulations. Finally, we extend the eikonal approximation to the dispersive regime, demonstrating that the essential features are robust in dispersive settings. This paves the way for future exploration in a controlled laboratory set-up.