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Detection of magnetic fields in both B-type components of the ε Lupi system: a new constraint on the origin of fossil fields?

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arxiv 1507.05084 v2 pith:EXOU6K5O submitted 2015-07-17 astro-ph.SR

Detection of magnetic fields in both B-type components of the ε Lupi system: a new constraint on the origin of fossil fields?

classification astro-ph.SR
keywords magneticfieldsbinaryclosefieldfossilstarssystem
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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High-resolution circular spectropolarimetric observations, obtained with ESPaDOnS in the context of the BinaMIcS Large Program, have revealed a magnetic field in the B3V secondary component of the SB2 binary system $\epsilon$ Lupi (B2/B3). As the B2V primary is already known to be magnetic, this is the first detection of a magnetic field in both components of an early-type binary system. The longitudinal magnetic field of the primary is $\sim -200$ G; that of the secondary $\sim +100$ G. Observations can be approximately reproduced by a model assuming the magnetic axes of the two stars are anti-aligned, and roughly parallel to their respective rotation axes. Estimated magnetospheric radii indicate a high probability that their magnetospheres are interacting. As many of the arguments for the different proposed formation scenarios of fossil magnetic fields rely upon evidence drawn from investigations of close binaries, in particular the rarity of magnetic ABO stars in close binaries and the previous absence of any known close binary with two magnetic, massive stars, this discovery may be an important new constraint on the origin of fossil magnetic fields.

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