Polarization Images of Solitonic Boson Stars

Fuente: arXiv
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Main Authors: Zeng, Xiao-Xiong, Yang, Chen-Yu, Yu, Hao, He, Ke-Jian
Format: Preprint
Published: 2025
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author Zeng, Xiao-Xiong
Yang, Chen-Yu
Yu, Hao
He, Ke-Jian
author_facet Zeng, Xiao-Xiong
Yang, Chen-Yu
Yu, Hao
He, Ke-Jian
contents This study investigates the polarization characteristics of solitonic boson stars surrounded by a thin accretion disk. By comparing their polarization images with corresponding optical images, we find a positive correlation between the polarization intensity distribution in the polarization images and the brightness in the optical images. Consequently, the strongest polarization occurs at the location corresponding to the direct image. The influence of the coupling strength of the sixtic potential on the polarization intensity distribution is not monotonic, under strong coupling, the polarization will concentrated on the left side of the image as the coupling strength increases, whereas under weak coupling, it is more evenly distributed across the entire direct image as the coupling strength increases. Moreover, we find that as the initial scalar field increases, both the lensing image and photon ring become more prominent. However, the polarization intensity at these regions remains weak. Due to the absence of the event horizon in solitonic boson stars, the polarization vector can penetrate the stellar interior, unlike in black holes, where no polarization signals exist within the event horizon. Our numerical simulations clearly reveal this phenomenon, suggesting that polarization features may serve as an effective tool for distinguishing solitonic boson stars from black holes.
format Preprint
id arxiv_https___arxiv_org_abs_2508_11992
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Polarization Images of Solitonic Boson Stars
Zeng, Xiao-Xiong
Yang, Chen-Yu
Yu, Hao
He, Ke-Jian
General Relativity and Quantum Cosmology
This study investigates the polarization characteristics of solitonic boson stars surrounded by a thin accretion disk. By comparing their polarization images with corresponding optical images, we find a positive correlation between the polarization intensity distribution in the polarization images and the brightness in the optical images. Consequently, the strongest polarization occurs at the location corresponding to the direct image. The influence of the coupling strength of the sixtic potential on the polarization intensity distribution is not monotonic, under strong coupling, the polarization will concentrated on the left side of the image as the coupling strength increases, whereas under weak coupling, it is more evenly distributed across the entire direct image as the coupling strength increases. Moreover, we find that as the initial scalar field increases, both the lensing image and photon ring become more prominent. However, the polarization intensity at these regions remains weak. Due to the absence of the event horizon in solitonic boson stars, the polarization vector can penetrate the stellar interior, unlike in black holes, where no polarization signals exist within the event horizon. Our numerical simulations clearly reveal this phenomenon, suggesting that polarization features may serve as an effective tool for distinguishing solitonic boson stars from black holes.
title Polarization Images of Solitonic Boson Stars
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2508.11992