Probing the magnetosphere of the m8.5 dwarf tvlm 513-46546 by modelling its auroral radio emission. hint of star exoplanet interaction?

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Abstract

In this paper, we simulate the cyclic circularly polarized pulses of the ultracool dwarf TVLM 513-46546, observed with the Very Large Array at 4.88 and 8.44 GHz on 2006 May, by using a three-dimensional model of the auroral radio emission from the stellar magnetosphere. During this epoch, the radio light curves are characterized by two pulses left-hand polarized at 4.88 GHz, and one doubly peaked (of opposite polarizations) pulse at 8.44 GHz. To take into account the possible deviation from the dipolar symmetry of the stellarmagnetic-field topology, the model described in this paper is also able to simulate the auroral radio emission from a magnetosphere shaped like an offset dipole. To reproduce the timing and pattern of the observed pulses, we explored the space of parameters controlling the auroral beaming pattern and the geometry of the magnetosphere. Through the analysis of the TVLM 513-46546 auroral radio emission, we derive some indications on the magnetospheric field topology that is able to simultaneously reproduce the timing and patterns of the auroral pulses measured at 4.88 and 8.44 GHz. Each set of model solutions simulates two auroral pulses (singly or doubly peaked) per period. To explain the presence of only one 8.44 GHz pulse per period, we analyse the case of auroral radio emission limited only to a magnetospheric sector activated by an external body, like the case of the interaction of Jupiter with its moons.

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Leto, P., Trigilio, C., Buemi, C. S., Umana, G., & Cerrigone, A. (2017). Probing the magnetosphere of the m8.5 dwarf tvlm 513-46546 by modelling its auroral radio emission. hint of star exoplanet interaction? Monthly Notices of the Royal Astronomical Society, 469(2), 1949–1967. https://doi.org/10.1093/mnras/stx995

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