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◆ Astronomy and Astrophysics2026-06-11· Physics

<sup>13</sup> CO and potential variability in <i>β</i> Pictoris b with GRAVITY+

A. von Stauffenberg, J. Sauter, P. Mollière, M. Ravet, D. Trevascus, W. Brandner, A. Berdeu, M. Bonnefoy, G. Bourdarot, J.-B Le Bouquin, G. Chauvin, F. Eisenhauer, M. Houllé, L. Kreidberg, E. Matthews, F. Millour, J. Scigliuto, J. Z. Wang, J.W. Xuan, Y. H. Zhang

原始摘要(英文原文)· Original abstract
The 12 CO/ 13 CO ratio was introduced as an indicator for where in the disk a planet has formed. Previously, a lower value compared to that of the host star was suggested to indicate that a planet accreted CO ice beyond the disk’s CO ice line. In this Letter, we aim to determine the 12 CO/ 13 CO value of the directly imaged planet β Pictoris b and whether we can link it to its formation. Its apparent brightness results in an exceptional signal-to-noise ratio of up to ∼60 per wavelength point. We present the first science observations with the upgraded GRAVITY+ instrument at a spectral resolution of R ≈ 4000, which we analysed with petitRADTRANS . Our retrievals robustly indicate 13 CO with a 12 CO/ 13 CO ratio of 91 +24 −17 , consistent with both a solar to interstellar-medium-like value. Our 12 CO/ 13 CO value corroborates recent interpretations that 13 CO may be a less useful tracer of formation location in the disk than previously thought; nonetheless, we discuss theories with which this value is consistent. As our observations span ≈7 hours, this enabled us to search for atmospheric variability in β Pictoris b; we report a tentative constraint on the variability amplitude of about 1.4 +0.6 −0.7 %.
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<sup>13</sup> CO and potential variability in <i>β</i> Pictoris b with GRAVITY+ — 科研速览 Science Skim