Microlensing bias on the detection of strong lensing gravitational wave

Fuente: arXiv
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Main Authors: Shan, Xikai, Chen, Xuechun, Hu, Bin, Li, Guoliang
Format: Preprint
Published: 2023
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author Shan, Xikai
Chen, Xuechun
Hu, Bin
Li, Guoliang
author_facet Shan, Xikai
Chen, Xuechun
Hu, Bin
Li, Guoliang
contents Identifying strong lensing gravitational wave (SLGW) events is of utmost importance in astrophysics as we approach the historic first detection of SLGW amidst the growing number of gravitational wave (GW) events. Currently, one crucial method for identifying SLGW signals involves assessing the overlap of parameters between two GWs. However, the distribution of discrete matter, such as stars and sub-halos, within the strong lensing galaxy can imprint a wave optical (WO) effect on the SLGW waveform. These frequency dependent imprints introduce biases in parameter estimation and impact SLGW identification. In this study, we assess the influence of the stellar microlensing field embedded in a strong lensing galaxy. Our finding demonstrate that the WO effect reduces the detection efficiency of SLGW by $5\%\sim 50\%$ for various false alarm probabilities per pair (${\rm FAP}_{\rm per~pair}$). Specifically, at an ${\rm FAP}_{\rm per~pair}$ of $10^{-5}$, the detection efficiency decreases from $\sim 10\%$ to $\sim 5\%$. Consequently, the presence of the microlensing field can result in missing half of the strong lensing candidates. Additionally, the microlensing WO effect introduces a noticeable bias in intrinsic parameters, particularly for chirp mass and mass ratio. However, it has tiny influence on extrinsic parameters. Considering all parameters, $\sim 30\%$ of events exhibit a $1σ$ parameter bias, $\sim 12\%$ exhibit a $2σ$ parameter bias, and $\sim 5\%$ exhibit a $3σ$ parameter bias.
format Preprint
id arxiv_https___arxiv_org_abs_2306_14796
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Microlensing bias on the detection of strong lensing gravitational wave
Shan, Xikai
Chen, Xuechun
Hu, Bin
Li, Guoliang
Cosmology and Nongalactic Astrophysics
General Relativity and Quantum Cosmology
Identifying strong lensing gravitational wave (SLGW) events is of utmost importance in astrophysics as we approach the historic first detection of SLGW amidst the growing number of gravitational wave (GW) events. Currently, one crucial method for identifying SLGW signals involves assessing the overlap of parameters between two GWs. However, the distribution of discrete matter, such as stars and sub-halos, within the strong lensing galaxy can imprint a wave optical (WO) effect on the SLGW waveform. These frequency dependent imprints introduce biases in parameter estimation and impact SLGW identification. In this study, we assess the influence of the stellar microlensing field embedded in a strong lensing galaxy. Our finding demonstrate that the WO effect reduces the detection efficiency of SLGW by $5\%\sim 50\%$ for various false alarm probabilities per pair (${\rm FAP}_{\rm per~pair}$). Specifically, at an ${\rm FAP}_{\rm per~pair}$ of $10^{-5}$, the detection efficiency decreases from $\sim 10\%$ to $\sim 5\%$. Consequently, the presence of the microlensing field can result in missing half of the strong lensing candidates. Additionally, the microlensing WO effect introduces a noticeable bias in intrinsic parameters, particularly for chirp mass and mass ratio. However, it has tiny influence on extrinsic parameters. Considering all parameters, $\sim 30\%$ of events exhibit a $1σ$ parameter bias, $\sim 12\%$ exhibit a $2σ$ parameter bias, and $\sim 5\%$ exhibit a $3σ$ parameter bias.
title Microlensing bias on the detection of strong lensing gravitational wave
topic Cosmology and Nongalactic Astrophysics
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2306.14796