Multiwavelength Radiation from the Interaction between Magnetar Bursts and Companion Star in a Binary System

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Main Authors: Wei, Yu-Jia, Yang, Yuan-Pei, Wei, Da-Ming, Dai, Zi-Gao
Format: Preprint
Published: 2024
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author Wei, Yu-Jia
Yang, Yuan-Pei
Wei, Da-Ming
Dai, Zi-Gao
author_facet Wei, Yu-Jia
Yang, Yuan-Pei
Wei, Da-Ming
Dai, Zi-Gao
contents Magnetars are young, highly magnetized neutron stars that are associated with magnetar short bursts (MSBs), magnetar giant flares (MGFs), and at least some fast radio bursts (FRBs). In this work, we consider a magnetar and a main sequence star in a binary system and analyze the properties of the electromagnetic signals generated by the interaction between the magnetar bursts and the companion star. During the preburst period, persistent radiation could be generated by the interaction between the $e^+e^-$-pair wind from the magnetar and the companion or its stellar wind. We find that for a newborn magnetar, the persistent preburst radiation from the strong magnetar wind can be dominant, and it is mainly at the optical and ultraviolet (UV) bands. For relatively old magnetars, the re-emission from a burst interacting with the companion is larger than the persistent preburst radiation and the luminosity of the companion itself. The transient re-emission produced by the heating process has a duration of $0.1 - 10^5 {\rm~s}$ at the optical, UV, and X-ray bands. Additionally, we find that if these phenomena occur in nearby galaxies within a few hundred kiloparsecs, they could be detected by current or future optical telescopes.
format Preprint
id arxiv_https___arxiv_org_abs_2405_10791
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Multiwavelength Radiation from the Interaction between Magnetar Bursts and Companion Star in a Binary System
Wei, Yu-Jia
Yang, Yuan-Pei
Wei, Da-Ming
Dai, Zi-Gao
High Energy Astrophysical Phenomena
Magnetars are young, highly magnetized neutron stars that are associated with magnetar short bursts (MSBs), magnetar giant flares (MGFs), and at least some fast radio bursts (FRBs). In this work, we consider a magnetar and a main sequence star in a binary system and analyze the properties of the electromagnetic signals generated by the interaction between the magnetar bursts and the companion star. During the preburst period, persistent radiation could be generated by the interaction between the $e^+e^-$-pair wind from the magnetar and the companion or its stellar wind. We find that for a newborn magnetar, the persistent preburst radiation from the strong magnetar wind can be dominant, and it is mainly at the optical and ultraviolet (UV) bands. For relatively old magnetars, the re-emission from a burst interacting with the companion is larger than the persistent preburst radiation and the luminosity of the companion itself. The transient re-emission produced by the heating process has a duration of $0.1 - 10^5 {\rm~s}$ at the optical, UV, and X-ray bands. Additionally, we find that if these phenomena occur in nearby galaxies within a few hundred kiloparsecs, they could be detected by current or future optical telescopes.
title Multiwavelength Radiation from the Interaction between Magnetar Bursts and Companion Star in a Binary System
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2405.10791