Beyond the dips of V807 Tau, a spectropolarimetric study of a dipper s magnetosphere
Kim Pouilly, J\'er\^ome Bouvier, Evelyne Alecian, Silvia H.P. Alencar,, Ann-Marie Cody, Jean-Fran\c{c}ois Donati, Konstantin Grankin, Luisa Rebull,, and Colin P. Folsom

TL;DR
This study investigates the magnetospheric accretion process in the young stellar object V807 Tau, revealing a stable dipolar magnetic field topology and ongoing accretion despite low system inclination, challenging previous assumptions about dipper star geometries.
Contribution
It provides detailed spectropolarimetric analysis of V807 Tau, characterizing its magnetic topology and accretion processes, and questions the link between dips and high inclination in such systems.
Findings
Magnetic field dominated by a 2 kG dipolar component.
Stable 4.38-day rotational period observed in photometry and spectroscopy.
Low inclination (~50°) challenges the typical dipper star model.
Abstract
We aim to characterize the magnetospheric accretion process in the young stellar object V807 Tau, one of the most stable dippers revealed by K2 in the Taurus star forming region. We performed photometric and spectropolarimetric follow-up observations of this system with CFHT/ESPaDOnS in order to investigate its variability over several rotational periods. We derive a 4.38 day period from the K2 light curve. This period is also seen in the radial velocity variations, ascribed to spot modulation. The narrow component of the He I 5876 {\AA} line as well as the red wing of the H{\beta} and H{\gamma} line profiles also vary in intensity with the same periodicity. The former traces the accretion shock at the stellar surface, and the latter is a signature of an accretion funnel flow crossing the line of sight. We derive a surface brightness and magnetic field topology from the modeling of…
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