Multi-frequency radio observations of the radio-loud magnetar XTE J1810-197
Sujin Eie, Toshio Terasawa, Takuya Akahori, Tomoaki Oyama, Tomoya, Hirota, Yoshinori Yonekura, Teruaki Enoto, Mamoru Sekido, Kazuhiro Takefuji,, Hiroaki Misawa, Fuminori Tsuchiya, Shota Kisaka, Takahiro Aoki, Mareki, Honma

TL;DR
This study presents multi-frequency radio observations of the magnetar XTE J1810-197 during its 2018 outburst, revealing spectral features like a gigahertz-peaked spectrum and narrowing pulse widths, which provide insights into magnetar emission mechanisms.
Contribution
First multi-epoch broad-band radio observations of XTE J1810-197 during its outburst, identifying spectral features such as GPS and high-frequency peaks.
Findings
Pulse width narrows at higher frequencies
Radio spectrum shows a steep spectral index (~-0.85)
Spectral analysis suggests a double-peaked spectrum with a GPS feature
Abstract
We report on the multi-frequency multi-epoch radio observations of the magnetar, XTE J1810-197, which exhibited a radio outburst from December 2018 after its 10-year quiescent period. We performed quasi-simultaneous observations with VERA (22 GHz), Hitachi (6.9 GHz and 8.4 GHz), Kashima (2.3 GHz), and Iitate (0.3 GHz) radio telescopes located in Japan to trace the variability of the magnetar radio pulsations during the observing period from 13 December 2018 to 12 June 2019. The pulse width goes narrower as the observing frequency goes higher, analogous to the general profile narrowing behavior of ordinary pulsars. When assuming a simple power law in the range of 2.3 GHz and 8.7 GHz, the radio spectrum of the magnetar goes steeper with the average spectral index for the first four months. The wide-band radio spectra inferred from our observations…
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