Linear to circular conversion in the polarized radio emission of a magnetar
arXiv:2311.04195 · doi:10.1038/s41550-024-02225-8
Abstract
Radio emission from magnetars provides a unique probe of the relativistic, magnetized plasma within the near-field environment of these ultra-magnetic neutron stars. The transmitted waves can undergo birefringent and dispersive propagation effects that result in frequency-dependent conversions of linear to circularly polarized radiation and vice-versa, thus necessitating classification when relating the measured polarization to the intrinsic properties of neutron star and fast radio burst (FRB) emission sites. We report the detection of such behavior in 0.7-4 GHz observations of the P = 5.54 s radio magnetar XTE J1810197 following its 2018 outburst. The phenomenon is restricted to a narrow range of pulse phase centered around the magnetic meridian. Its temporal evolution is closely coupled to large-scale variations in magnetic topology that originate from either plastic motion of an active region on the magnetar surface or free precession of the neutron star crust. Our model of the effect deviates from simple theoretical expectations for radio waves propagating through a magnetized plasma. Birefringent self-coupling between the transmitted wave modes, line-of-sight variations in the magnetic field direction and differences in particle charge or energy distributions above the magnetic pole are explored as possible explanations. We discuss potential links between the immediate magneto-ionic environments of magnetars and those of FRB progenitors.
22 pages (inc. extended data and supplementary materials), 12 figures, 3 tables. Published in Nature Astronomy
References in corpus (29)
- PSRCHIVE and PSRFITS An Open Approach to Radio Pulsar Data Storage and Analysis
- Transient pulsed radio emission from a magnetar
- A fast radio burst source at a complex magnetised site in a barred galaxy
- A Study of Multi-frequency Polarization Pulse Profiles of Millisecond Pulsars
- Frequency-dependent polarization of repeating fast radio bursts-implications for their origin
- Pulsar braking and the P-Pdot diagram
- Pulsar Rotation Measures and Large-scale Magnetic Field Reversals in the Galactic Disk
- Magnetic field reversal in the turbulent environment around a repeating fast radio burst
- Rotation Measure Evolution of the Repeating Fast Radio Burst Source FRB 121102
- Polarized radio emission from a magnetar
- The variable radio-to-X-ray spectrum of the magnetar XTE J1810-197
- Wideband polarized radio emission from the newly revived magnetar XTE J1810197
- Large magnetic field variations towards the Galactic Centre magnetar, PSR J1745-2900
- A Large Scale Magneto-ionic Fluctuation in the Local Environment of Periodic Fast Radio Burst Source, FRB 20180916B
- Conversion Measure of Faraday Rotation-Conversion with application to Fast Radio Bursts
- The complex polarization angles of radio pulsars: orthogonal jumps and interstellar scattering
- The dynamic magnetosphere of Swift J1818.01607
- Post-Outburst Radio Observations of the High Magnetic Field Pulsar PSR J1119-6127
- A Highly Variable Magnetized Environment in a Pulsar Binary resembling Fast Radio Bursts
- Spin-down evolution and radio disappearance of the magnetar PSR J16224950
- The 2018 X-ray and Radio Outburst of Magnetar XTE J1810-197
- Circular Polarization in two Active Repeating Fast Radio Bursts
- A polarization census of bright pulsars using the Ultra-Wideband Receiver on the Parkes radio telescope
- Pulse Peak Migration during the Outburst Decay of the Magnetar SGR 1830-0645: Crustal Motion and Magnetospheric Untwisting
- Pulsar polarization: a partial-coherence model
- The X-ray evolution and geometry of the 2018 outburst of XTE J1810-197
- Artefacts of circumpolar cartography in radio pulsar polarization
- Propagation of a fast radio burst through a birefringent relativistic plasma
- Radio pulsar polarization as a coherent sum of orthogonal proper mode waves
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- An emission state switching radio transient with a 54 minute period
- The emission of interpulses by a 6.45-hour period coherent radio transient
- A highly magnetized long-period radio transient exhibiting unusual emission features
- Rapid Rotation of Polarization Orientations in PSR B1919+21's Single Pulses: Implications On Pulsar's Magnetospheric Dynamics
- Prospects for Time-Domain and Multi-Messenger Science with eXTP
- Giant radio pulses in the magnetar XTE J1810-197 detected with the IAR's telescopes