The ESO SupJup Survey II. The 12C/13C isotope ratios of three young brown dwarfs with CRIRES+

D. González Picos, I. Snellen, S. de Regt, R. Landman, Y. Zhang, S. Gandhi, C. Ginski, A. Kesseli, P. Mollière, T. Stolker
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Abstract

Young brown dwarfs exhibit atmospheric characteristics similar to those of super-Jupiters, providing a unique opportunity to study planetary atmospheres. Atmospheric retrievals of high-resolution spectra reveal detailed properties of these objects, with elemental and isotopic ratios offering insights into their formation history. The ESO SupJup Survey, utilising CRIRES$^+$ on the Very Large Telescope, aims to assess the role of as a formation tracer. We present observations of three young brown dwarfs: 2MASS J12003792-7845082, TWA 28, and 2MASS J08561384-1342242. Our goal is to constrain their chemical compositions, thermal profiles, surface gravities, spin rotations, and Cratio. We conducted atmospheric retrievals of CRIRES$^+$ K-band spectra, coupling the radiative transfer code petitRADTRANS with the Bayesian inference algorithm MultiNest The retrievals provide a detailed characterisation of the atmospheres of the three objects. We report the volume mixing ratios of the main molecular and atomic species: HF, Na, Ca, and Ti, including the novel detection of hydrogen fluoride (HF) in the atmosphere of a brown dwarf. We determine values of $ and $79^ $ in the atmospheres of TWA 28 and J0856, respectively, with strong significance ($>3 We also report tentative evidence ($ of in J1200, at $. Additionally, we detect at moderate significance in J0856 (3.3sigma ) and TWA 28 (2.1sigma ). The retrieved thermal profiles are consistent with hot atmospheres ($2300-2600$ K) with low surface gravities and slow spins, as expected for young objects. The measured carbon isotope ratios are consistent among the three objects and show no significant deviation from that of the local interstellar medium, suggesting a fragmentation-based formation mechanism similar to star formation. The tentative detection of in two objects of our sample highlights the potential of high-resolution spectroscopy to probe additional isotope ratios, such as O in the atmospheres of brown dwarfs and super-Jupiters.
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ESO SupJup Survey II.用 CRIRES+ 测量三颗年轻褐矮星的 12C/13C 同位素比
年轻褐矮星的大气特征与超巨星类似,为研究行星大气提供了一个独特的机会。对高分辨率光谱的大气检索揭示了这些天体的详细特性,其中的元素和同位素比值有助于深入了解它们的形成历史。欧洲南方天文台的 SupJup 勘测利用甚大望远镜上的 CRIRES$^+$,旨在评估其作为形成示踪剂的作用。我们展示了对三颗年轻褐矮星的观测结果:2MASS J12003792-7845082、TWA 28 和 2MASS J08561384-1342242。我们的目标是对它们的化学成分、热剖面、表面引力、自旋旋转和Cratio进行约束。我们将辐射传递代码 petitRADTRANS 与贝叶斯推理算法 MultiNest 相结合,对 CRIRES$^+$ K 波段光谱进行了大气检索。我们报告了主要分子和原子物种的体积混合比:HF、Na、Ca 和 Ti 的体积混合比,包括在褐矮星大气中发现氟化氢(HF)的新发现。我们确定 TWA 28 和 J0856 大气中的氟化氢含量分别为 $ 和 $79^$,具有很高的显著性($>3 我们还报告了 J1200 大气中氟化氢含量为 $ 的初步证据($)。探测到的热剖面与年轻天体的热大气(2300-2600$ K)、低表面重力和慢自旋相一致。测得的碳同位素比值在三个天体中是一致的,与当地星际介质的碳同位素比值没有明显偏差,这表明天体的形成机制类似于恒星形成过程中的碎裂。在我们样本中的两个天体中初步探测到了碳同位素,这凸显了高分辨率光谱探测其他同位素比率的潜力,例如褐矮星和超巨星大气中的碳同位素比率。
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