论文标题
重力波的镜头:有效的波镜方法和对称镜头的验证
Lensing of gravitational waves: efficient wave-optics methods and validation with symmetric lenses
论文作者
论文摘要
引力波(GW)天文学提供了探测引力镜头波访问的潜力。当波长与特征性镜头时间延迟相当时,波光学(WO)效应在低频下是相关的,因此对于电磁信号而言,波长乘以光速乘以光速。准确的预测需要计算有条件的收敛衍射积分,该积分涉及高度振荡的积分,并且在数值上很难。我们开发并实施了几种方法,以计算WO制度中有效的通用重力镜片中的镜头预测。首先,我们得出了高频和低频的近似值,从而获得了几种分析透镜模型的明确表达式。接下来,我们讨论两种适用于中间频率范围内的数值方法:1)正则化轮廓流在一秒钟的一秒钟内获得准确的答案,对于广泛的频率。 2)复杂变形较慢,但不需要对几何透镜方程的解决方案的了解。两种方法都是独立的,并相互补充。我们验证了多种镜头模型的次级准确性,这应该足以在不久的将来应用GW天文学。除了建模镜头GWS外,我们的方法还适用于无线电波和重力测试的血浆镜头研究。
Gravitational wave (GW) astronomy offers the potential to probe the wave-optics regime of gravitational lensing. Wave optics (WO) effects are relevant at low frequencies, when the wavelength is comparable to the characteristic lensing time delay multiplied by the speed of light, and are thus often negligible for electromagnetic signals. Accurate predictions require computing the conditionally convergent diffraction integral, which involves highly oscillatory integrands and is numerically difficult. We develop and implement several methods to compute lensing predictions in the WO regime valid for general gravitational lenses. First, we derive approximations for high and low frequencies, obtaining explicit expressions for several analytic lens models. Next, we discuss two numerical methods suitable in the intermediate frequency range: 1) Regularized contour flow yields accurate answers in a fraction of a second for a broad range of frequencies. 2) Complex deformation is slower, but requires no knowledge of solutions to the geometric lens equation. Both methods are independent and complement each other. We verify sub-percent accuracy for several lens models, which should be sufficient for applications to GW astronomy in the near future. Apart from modelling lensed GWs, our method will also be applicable to the study of plasma lensing of radio waves and tests of gravity.