Sep 17 – 22, 2017
La Biodola, Isola d'Elba
Europe/Rome timezone
To contact the conference secretariat call:+ 39 0565 974626 or + 39 3348998639 (for emergency) or send an e-mail to stellarages2017@pi.infn.it

The Effect of Combined Magnetic Topologies on Thermally Driven Winds

Sep 18, 2017, 5:33 PM
2m
La Biodola, Isola d'Elba

La Biodola, Isola d'Elba

Speaker

Adam Finley (University of Exeter)

Description

Cool stars with outer convective envelopes are observed to have magnetic fields with a variety of geometries, which on large scales are dominated by a combination of the lowest order fields such as the dipole, quadrupole and octupole modes. Magnetised stellar wind outflows are primarily responsible for the loss of angular momentum from these objects during the main sequence. Previous works have shown the reduced effectiveness of the stellar wind braking mechanism with increasingly complex, but singular, magnetic field geometries. In this paper, we quantify the impact of mixed dipolar and quadrupolar fields on the spin-down torque using mixed field MHD wind simulations. Theses include a wide range of magnetic field strength and reside in the slow-rotator regime. We find that the stellar wind braking torque from our combined geometry cases are well described by a broken power law behaviour, where the torque scaling with field strength can be predicted by the dipole component alone or the quadrupolar scaling utilising the total field strength. The lowest order field component is found to be the most significant and we observe this to continue for higher order mixed field combinations.

Primary author

Adam Finley (University of Exeter)

Co-author

Sean Matt (University of Exeter)

Presentation materials

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