GLoW: novel methods for wave-optics phenomena in gravitational lensing

Hector Villarrubia-Rojo, Stefano Savastano, Miguel Zumalacárregui, Lyla Choi, Srashti Goyal, Liang Dai, Giovanni Tambalo
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Abstract

Wave-optics phenomena in gravitational lensing occur when the signal's wavelength is commensurate to the gravitational radius of the lens. Although potentially detectable in lensed gravitational waves, fast radio bursts and pulsars, accurate numerical predictions are challenging to compute. Here we present novel methods for wave-optics lensing that allow the treatment of general lenses. In addition to a general algorithm, specialized methods optimize symmetric lenses (arbitrary number of images) and generic lenses in the single-image regime. We also develop approximations for simple lenses (point-like and singular isothermal sphere) that drastically outperform known solutions without compromising accuracy. These algorithms are implemented in Gravitational Lensing of Waves (GLoW): an accurate, flexible, and fast code. GLoW efficiently computes the frequency-dependent amplification factor for generic lens models and arbitrary impact parameters in O(1 ms) to O(10 ms) depending on the lens configuration and complexity. GLoW is readily applicable to model lensing diffraction on gravitational-wave signals, offering new means to investigate the distribution of dark-matter and large-scale structure with signals from ground and space detectors.
GLoW:引力透镜中波光学现象的新方法
当信号的波长与透镜的引力半径相称时,就会出现引力透镜中的波光学现象。虽然有可能在透镜引力波、快速射电暴和脉冲星中被探测到,但精确的数值预测计算却具有挑战性。在这里,我们提出了波光学透镜的新方法,可以处理一般透镜。除了一般算法之外,专门方法还优化了对称透镜(任意图像数)和单图像机制下的一般透镜。我们还开发了简单透镜(点状和奇异等温球)的近似方法,在不影响精度的情况下大大优于已知的解决方案。这些算法在引力波透镜(Gravitational Lensing of Waves,GLoW)中实现:GLoW 是一个精确、灵活、快速的代码。GLoW 可以根据透镜配置和复杂程度,在 O(1 ms) 到 O(10 ms) 的时间内高效计算通用透镜模型和任意冲击参数的频率相关放大系数。GLoW很容易用于建立引力波信号的透镜衍射模型,为利用地面和空间探测器的信号研究暗物质和大尺度结构的分布提供了新的手段。
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