Gravitational lensing of gravitational waves: universal characteristics of strongly lensed memory waveforms

Fuente: arXiv
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Main Authors: Zhang, Ruanjing, Zhao, Zhi-Chao, Hou, Shaoqi, Fan, Xi-Long, Liao, Kai, Zhu, Zong-Hong
Format: Preprint
Published: 2025
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author Zhang, Ruanjing
Zhao, Zhi-Chao
Hou, Shaoqi
Fan, Xi-Long
Liao, Kai
Zhu, Zong-Hong
author_facet Zhang, Ruanjing
Zhao, Zhi-Chao
Hou, Shaoqi
Fan, Xi-Long
Liao, Kai
Zhu, Zong-Hong
contents In this work, the strong lensing effect of the memory signal was considered. In the geometric optics limit, the lensed memory signal becomes oscillatory, while the unlensed is basically monotonic. This is because only the high frequency Fourier modes contribute to the lensed signal. Therefore, the strong lensing system serves as a high-pass filter for the memory signal. Due to the step function like behavior of the unlensed memory waveform, the lensed waveform possesses characteristic morphology that is dependent on the type of the image, and independent of the lens model and the binary system. That is, for each type of the lensed image, the lensed memory waveform has an approxmiate reflection symmetry about a symmetrical axis in the time domain. More specifically, for the type I and type III images, the lensed memory signals are nearly odd under the reflection, while the type II signal is roughly even. In addition, at the symmetrical axis, the sign of the slope for type I image is different from that for the type III image. These universal characteristic features would help determine the type of the lensed image. This is particularly because the memory waveform can be well approximated by a suitable step function, which involves two parameters. In addition, the detection of multiple images by the space-borne interferometer would also be helpful. Once the type of the lensed image is determined with the approximated memory waveform, one can use the appropriate waveform template for the oscillatory component of the gravitational wave to perform the parameter estimation.
format Preprint
id arxiv_https___arxiv_org_abs_2510_09132
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Gravitational lensing of gravitational waves: universal characteristics of strongly lensed memory waveforms
Zhang, Ruanjing
Zhao, Zhi-Chao
Hou, Shaoqi
Fan, Xi-Long
Liao, Kai
Zhu, Zong-Hong
General Relativity and Quantum Cosmology
In this work, the strong lensing effect of the memory signal was considered. In the geometric optics limit, the lensed memory signal becomes oscillatory, while the unlensed is basically monotonic. This is because only the high frequency Fourier modes contribute to the lensed signal. Therefore, the strong lensing system serves as a high-pass filter for the memory signal. Due to the step function like behavior of the unlensed memory waveform, the lensed waveform possesses characteristic morphology that is dependent on the type of the image, and independent of the lens model and the binary system. That is, for each type of the lensed image, the lensed memory waveform has an approxmiate reflection symmetry about a symmetrical axis in the time domain. More specifically, for the type I and type III images, the lensed memory signals are nearly odd under the reflection, while the type II signal is roughly even. In addition, at the symmetrical axis, the sign of the slope for type I image is different from that for the type III image. These universal characteristic features would help determine the type of the lensed image. This is particularly because the memory waveform can be well approximated by a suitable step function, which involves two parameters. In addition, the detection of multiple images by the space-borne interferometer would also be helpful. Once the type of the lensed image is determined with the approximated memory waveform, one can use the appropriate waveform template for the oscillatory component of the gravitational wave to perform the parameter estimation.
title Gravitational lensing of gravitational waves: universal characteristics of strongly lensed memory waveforms
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2510.09132