On the Origin of Kinematic Structure in the Young Association Serpens OB2
Michael A. Kuhn (1), Robert A. Benjamin (2), Simran S. Singh (1), ((1) University of Hertfordshire, (2) University of Wisconsin-Whitewater)

TL;DR
This study investigates the kinematic structure and expansion of the Serpens OB2 star-forming association, revealing multi-scale motions and a global vertical expansion likely driven by turbulence and stellar feedback.
Contribution
It provides the first detailed analysis of the internal kinematics and large-scale expansion of Serpens OB2 using Gaia data and molecular cloud observations.
Findings
Aligned stellar velocities on <2 pc scales
Increasing velocity differences at larger separations
Global expansion perpendicular to the Galactic plane
Abstract
The Serpens OB2 association (l ~ 18.5 deg, b ~ 1.9 deg, d = 1950 +/- 30 pc) is a large star-forming complex ~65 pc above the Galactic midplane, with a clumpy, elongated structure extending ~50 pc parallel to the plane. We analyse probable association members, including OB stars and low-to-intermediate-mass young stellar objects (YSOs) from the SPICY catalogue. We use 13CO MWISP data to trace the molecular clouds. The OB stars are concentrated toward the centre of the association, coincident with a gap in the molecular clouds, and toward the side nearest the Galactic plane. The YSOs are distributed throughout the association, but cluster around molecular-cloud clumps. Using Gaia DR3 proper motions to probe the association's internal kinematics, we find aligned stellar velocities on length scales <2 pc, two-point statistics that show increasing velocity differences and predominantly…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Astronomy and Astrophysical Research · Stellar, planetary, and galactic studies
