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Observational Signatures of Circumbinary Discs II: Kinematic Signatures in Velocity Residuals

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arxiv 2407.21309 v1 pith:57GQ2F5E submitted 2024-07-31 astro-ph.EP

classification astro-ph.EP
keywords kinematicsignaturescircumbinarydiscscavitycompaniondoppler-flipsprotoplanetary
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Kinematic studies of protoplanetary discs are a valuable method for uncovering hidden companions. In the first paper of this series, we presented five morphological and kinematic criteria that aid in asserting the binary nature of a protoplanetary disc. In this work we study the kinematic signatures of circumbinary discs in the residuals of their velocity maps. We show that Doppler-flips, spiral arms, eccentric gas motion, fast flows inside of the cavity, and vortex-like kinematic signatures are commonly observed. Unlike in the planetary mass companion case, Doppler-flips in circumbinary discs are not necessarily centred on a companion, and can extend towards the cavity edge. We then compare the kinematic signatures in our simulations with observations and see similarities to the Doppler-flip signal in HD 100546 and the vortex-like kinematic signatures in HD 142527. Our analysis also reveals kinematic evidence for binarity in several protoplantary disks typically regarded as circumstellar rather than circumbinary, including AB Aurigae and HD 100546.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Infall Explains the Disk Kinematics of AB Aur Without Gravitational Instability

    astro-ph.EP 2025-10 conditional novelty 6.0 of 10

    Infalling gas streamers, not disk self-gravity, can produce the convergent velocity signature around the AB Aur spiral arms that was used as evidence for gravitational instability.

  2. Circumstellar and circumbinary discs in multiple stellar systems

    astro-ph.EP 2025-01 conditional novelty 1.0 of 10

    This review consolidates current knowledge on how stellar multiplicity shapes protoplanetary disc structure, dust evolution, and planet formation outcomes.

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