Main-sequence low-mass stars are known to spin down as a consequence of their magnetized stellar winds. However, estimating the precise rate of this spin-down is an open problem. The mass-loss rate, angular momentum loss rate, and magnetic field properties of low-mass stars are fundamentally linked, making this a challenging task. Of particular interest is the stellar magnetic field geometry. In this work, we consider whether non-dipolar field modes contribute significantly to the spin-down of low-mass stars. We do this using a sample of stars that have all been previously mapped with Zeeman–Doppler imaging. For a given star, as long as its mass-loss rate is below some critical mass-loss rate, only the dipolar fields contribute to its spin-...
This is the final version. Available from IOP Publishing via the DOI in this recordNumerous attempts...
Numerous attempts to estimate the rate at which low-mass stars lose angular momentum over their life...
PL acknowledges support from a Science and Technology Facilities Council studentship. JM, AAV and RF...
This is the final version. Available from the American Astronomical Society via the DOI in this reco...
International audienceMain-sequence low-mass stars are known to spin down as a consequence of their ...
International audienceMain-sequence low-mass stars are known to spin down as a consequence of their ...
International audienceMain-sequence low-mass stars are known to spin down as a consequence of their ...
International audienceMain-sequence low-mass stars are known to spin down as a consequence of their ...
International audienceMain-sequence low-mass stars are known to spin down as a consequence of their ...
International audienceMain-sequence low-mass stars are known to spin down as a consequence of their ...
Magnetic activity and rotation are known to be intimately linked for low-mass stars. Understanding r...
14 pages, 8 figures, 2 tables.International audienceMagnetic activity and rotation are known to be i...
14 pages, 8 figures, 2 tables.International audienceMagnetic activity and rotation are known to be i...
14 pages, 8 figures, 2 tables.International audienceMagnetic activity and rotation are known to be i...
14 pages, 8 figures, 2 tables.International audienceMagnetic activity and rotation are known to be i...
This is the final version. Available from IOP Publishing via the DOI in this recordNumerous attempts...
Numerous attempts to estimate the rate at which low-mass stars lose angular momentum over their life...
PL acknowledges support from a Science and Technology Facilities Council studentship. JM, AAV and RF...
This is the final version. Available from the American Astronomical Society via the DOI in this reco...
International audienceMain-sequence low-mass stars are known to spin down as a consequence of their ...
International audienceMain-sequence low-mass stars are known to spin down as a consequence of their ...
International audienceMain-sequence low-mass stars are known to spin down as a consequence of their ...
International audienceMain-sequence low-mass stars are known to spin down as a consequence of their ...
International audienceMain-sequence low-mass stars are known to spin down as a consequence of their ...
International audienceMain-sequence low-mass stars are known to spin down as a consequence of their ...
Magnetic activity and rotation are known to be intimately linked for low-mass stars. Understanding r...
14 pages, 8 figures, 2 tables.International audienceMagnetic activity and rotation are known to be i...
14 pages, 8 figures, 2 tables.International audienceMagnetic activity and rotation are known to be i...
14 pages, 8 figures, 2 tables.International audienceMagnetic activity and rotation are known to be i...
14 pages, 8 figures, 2 tables.International audienceMagnetic activity and rotation are known to be i...
This is the final version. Available from IOP Publishing via the DOI in this recordNumerous attempts...
Numerous attempts to estimate the rate at which low-mass stars lose angular momentum over their life...
PL acknowledges support from a Science and Technology Facilities Council studentship. JM, AAV and RF...