Sporadic radio pulses from a white dwarf binary at the orbital period

Спорадические радиовсплески от двойной системы с белым карликом на орбитальном периоде
J. W. T. Hessels, R. A. M. J. Wijers, S. ter Veen, A. Rowlinson, C. Bassa, Gregory R. Zeimann, Suvrath Mahadevan, C. D. Kilpatrick, Guðmundur Stefánsson, R. Wijnands, Iris de Ruiter, Kaustubh Rajwade, J. R. Callingham, T. Clarke, Wendy Peters, T. W. Shimwell, V. Morello
2025-03-12

M dwarf–white dwarf binarycoherent emission in astrophysical plasmamagnetic interaction and plasma exchangeorbital period 125.5 minpolar systemsporadic radio pulsestransient radio source ILT J1101+5521white dwarf binary
Abstract Recent observations have revealed rare, previously unknown flashes of cosmic radio waves lasting from milliseconds to minutes, with a periodicity of minutes to an hour. These transient radio signals must originate from sources in the Milky Way and from coherent emission processes in astrophysical plasma. They are theorized to be produced in the extreme and highly magnetized environments around white dwarfs or neutron stars. However, the astrophysical origin of these signals remains contested, and multiple progenitor models may be needed to explain their diverse properties. Here we present the discovery of a transient radio source, ILT J1101 + 5521, whose roughly minute-long pulses arrive with a periodicity of 125.5 min. We find that ILT J1101 + 5521 is an M dwarf–white dwarf binary system with an orbital period that matches the period of the radio pulses, which are observed when the two stars are in conjunction. The binary nature of ILT J1101 + 5521 establishes that some long-period radio transients originate from orbital motion modulating the observed emission, as opposed to an isolated rotating star. We conclude that ILT J1101 + 5521 is probably a polar system where magnetic interaction has synchronized the rotational and orbital periods of the white dwarf. Magnetic interaction and plasma exchange between two stars has been theorized to generate sporadic radio emission, making ILT J1101 + 5521 a potential low-mass analogue to such mechanisms.
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Discovery of transient radio source ILT J1101+5521 producing roughly minute-long pulses with a periodicity of 125.5 minutes
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Evidence suggests ILT J1101+5521 is likely a polar system with synchronized white-dwarf rotation and orbital period due to magnetic interaction
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ILT J1101+5521 is identified as an M-dwarf–white-dwarf binary whose orbital period matches the radio-pulse period
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Magnetic interaction and plasma exchange between the two stars are a plausible mechanism for the sporadic radio emission, making the system a low-mass analogue of proposed models
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Radio pulses are observed when the two stars are in conjunction, linking emission modulation to orbital motion rather than isolated stellar rotation

The transient radio source ILT J1101+5521, an M-dwarf–white-dwarf binary system (probable polar)

Sporadic minute-long radio pulses at a 125.5 min periodicity linked to orbital-phase-dependent emission, and the role of magnetic interaction/plasma exchange (synchronization of white-dwarf rotation and orbit) as the emission mechanism

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Publication Date
2025-03-12
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Authors
J. W. T. Hessels
R. A. M. J. Wijers
S. ter Veen
A. Rowlinson
C. Bassa
Gregory R. Zeimann
Suvrath Mahadevan
C. D. Kilpatrick
Guðmundur Stefánsson
R. Wijnands
Iris de Ruiter
Kaustubh Rajwade
J. R. Callingham
T. Clarke
Wendy Peters
T. W. Shimwell
V. Morello
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