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Multifrequency Radio Observations of the Magnetar Swift J1818.0--1607
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abstract
We report on Green Bank Telescope observations of the radio magnetar Swift J1818.0--1607 between 820 MHz and 35 GHz, taken from six to nine months after its 2020 March outburst. We obtained multi-hour observations at six frequencies, recording polarimetric, spectral, and single-pulse information. The spectrum peaks at a frequency of $5.4 \pm 0.6$ GHz, making Swift J1818.0--1607 one of many radio magnetars which exhibit a gigahertz-peaked spectrum (GPS). The radio flux decays steeply above the peak frequency, with in-band spectral indices $\alpha < -2.3 $ above 9 GHz. The emission is highly ($> 50\%$) linearly polarized, with a lower degree ($< 30\%$) of circular polarization which can change handedness between single pulses. Across the frequency range of our observations, the time-integrated radio profiles share a common shape: a narrow ``pulsar-like'' central component flanked by ``magnetar-like'' components comprised of bright, spiky subpulses. The outer profile components exhibit larger degrees of flux modulation and flatter spectral indices when compared to the central pulse component.
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Cited by 1 Pith paper
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The Timing Evolution of the Magnetar Swift J1818.0-1607 During a Period of Reduced Activity
A 60-day GBT campaign on the magnetar Swift J1818.0-1607 shows a stable single-peaked pulse profile, slower spin-down, and revised characteristic age of about 2500 years and surface field of about 10^14 G.
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