Weak lensing of gravitational waves in wave optics: Beyond the Born approximation
arXiv:2210.02062 · doi:10.1103/PhysRevD.108.043511
Abstract
The Universe's matter inhomogeneity gravitationally affects the propagation of gravitational waves (GWs), causing the lensing effect. Particularly, the weak lensing of GWs has been studied within the range of the Born approximation to constrain the small-scale power spectrum. In this work, the validity of the Born approximation is investigated by accounting for the higher-order terms in the gravitational potential . To do so, we formulate the post-Born approximation and derive the magnification and the phase modulation up to third order in . We find that the average of and is non-zero and that the average of depends on the size of the point mass. Due to this size dependency, the signal is enhanced, and the number of GW events required for detecting the average of decreases. We find that this number can become comparable to or even smaller than the number required for detecting the variance of in certain scenarios. In addition, it is verified that, for lensing by dark low-mass halos, the post-Born corrections are a few orders of magnitude smaller than the Born approximation at ~Hz. However, in the presence of the point mass, there is a condition under which the Born approximation fails. We derive the correction terms to the Born approximation and identify the condition under which the Born approximation no longer holds. For the magnification, the Born approximation is valid as long as the wavelength of GWs is larger than the Schwarzschild radius of lenses, while for the phase modulation, this condition is modified due to the physical size of the point mass.
54 pages, 11 figures, 1 table, accepted version
References in corpus (6)
- Exploring the Sensitivity of Next Generation Gravitational Wave Detectors
- Model Waveform Accuracy Standards for Gravitational Wave Data Analysis
- Probing Dark Low-mass Halos and Primordial Black Holes with Frequency-dependent Gravitational Lensing Dispersions of Gravitational Waves
- Effects of halo substructure on the power spectrum and bispectrum
- Amplitude and phase fluctuations of gravitational waves magnified by strong gravitational lensing
- Universal relation between the variances of distortions of gravitational waves owing to gravitational lensing
Cited by in corpus (4)
- Probing wave-optics effects and low-mass dark matter halos with lensing of gravitational waves from massive black holes
- The Born approximation in wave optics gravitational lensing revisited
- New Consistency Relations between Averages and Variances of Weakly Lensed Signals of Gravitational Waves
- Consistency relations of amplitude and phase fluctuations of gravitational waves magnified by strong gravitational lensing