Discovery of magnetic fields in the very young, massive stars W601 (NGC 6611) and OI 201 (NGC 2244)
E. Alecian (RMC, LESIA), G.A. Wade (RMC), C. Catala (LESIA), S., Bagnulo (Armagh Observatory), T. Boehm (LATT), D. Bohlender (NRC), J.-C., Bouret (LAM), J.-F. Donati (LATT), C.P. Folsom (Armagh Observatory), J., Grunhut (RMC), and J.D. Landstreet (UWO)

TL;DR
This study reports the first detection of strong magnetic fields in two very young, massive pre-main sequence stars, revealing insights into magnetic field evolution and angular momentum in early stellar development.
Contribution
It provides the first spectropolarimetric detection of magnetic fields in two young massive stars, including a rapid rotator, advancing understanding of magnetic origins in early stellar evolution.
Findings
Detected magnetic fields >1 kG in two young massive stars
First magnetic detection in a pre-main sequence rapid rotator
Observed magnetic field stability suggesting long rotational periods or specific orientations
Abstract
Context: Recent spectropolarimetric observations of Herbig Ae/Be stars have yielded new arguments in favour of a fossil origin for the magnetic fields of intermediate mass stars. Aims: To study the evolution of these magnetic fields, and their impact on the evolution of the angular momentum of these stars during the pre-main sequence phase, we observed Herbig Ae/Be members of young open clusters of various ages. Methods: We obtained high-resolution spectropolarimetric observations of Herbig Ae/Be stars belonging to the young open clusters NGC 6611 (< 6 Myr), NGC 2244 (~1.9 Myr), and NGC 2264 (~8 Myr), using ESPaDOnS at theCanada-France-Hawaii Telescope. Results: Here we report the discovery of strong magnetic fields in two massive pre-main sequence cluster stars. We detected, for the first time, a magnetic field in a pre-main sequence rapid rotator: the 10.2 Msun Herbig B1.5e star W601…
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