The ESO SupJup Survey

IF 5.4 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
S. de Regt, I. A. G. Snellen, N. F. Allard, D. González Picos, S. Gandhi, N. Grasser, R. Landman, P. Mollière, E. Nasedkin, T. Stolker, Y. Zhang
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Abstract

Context. Brown dwarfs at the L–T transition likely experience an inhomogeneous clearing of the clouds in their atmospheres. The resulting surface of thin and thick cloudy patches has been put forward to explain the observed variability, J-band brightening, and re-emergence of FeH absorption.Aims. We studied the closest binary brown dwarfs, Luhman 16A and B, in an effort to constrain their chemical and cloud compositions. As this binary consists of an L7.5 and a T0.5 component, we gain insight into the atmospheric properties at the L–T transition.Methods. As part of the ESO SupJup Survey, we observed Luhman 16AB at high spectral resolution in the J band (1.1–1.4 μm) using CRIRES+. To analyse the spectra, we employed an atmospheric retrieval framework, coupling the radiative transfer code petitRADTRANS with the MultiNest sampling algorithm.Results. For both objects, we report detections of H2O, K, Na, FeH, and, for the first time in the J band, hydrogen fluoride (HF). The K doublet at 1250 nm shows asymmetric absorption in the blue line wings, which are reproduced via pressure- and temperature-dependent shifts in the line cores. We find evidence of clouds in both spectra and place constraints on an FeH depletion in the Luhman 16A photosphere. The inferred over-abundance of FeH for Luhman 16B is in contradiction with its predicted rainout into iron clouds. A two-column model, which emulates the patchy surface expected at the L–T transition, is weakly preferred (~1.8σ) for component B but disfavoured for A (~5.5σ).Conclusions. The results suggest a uniform surface on Luhman 16A, which is in good agreement with the reduced variability observed for this L-type component. While the presented evidence is not sufficient to allow us to draw conclusions about any inhomogeneity on Luhman 16B, future observations covering a broader wavelength range could help us test the cloud-clearing hypothesis.
ESO SupJup调查
上下文。处于L-T跃迁的褐矮星可能经历了大气层中云层的不均匀清除。由此产生的薄厚云块表面被提出来解释观测到的变异性、j波段变亮和FeH吸收的重新出现。我们研究了距离最近的双棕矮星卢曼16A和卢曼16b,试图弄清它们的化学和云层组成。由于这个双星由L7.5和T0.5组成,我们可以深入了解L-T转换时的大气特性。作为ESO SupJup巡天的一部分,我们使用CRIRES+在J波段(1.1-1.4 μm)以高光谱分辨率观测了Luhman 16AB。为了分析光谱,我们采用了一个大气检索框架,将辐射传输代码petitRADTRANS与multiest采样算法耦合在一起。对于这两个对象,我们报道了H2O, K, Na, FeH的检测,并首次在J波段检测到氟化氢(HF)。1250 nm处的K重态在蓝线翼中显示出不对称吸收,这是通过线芯中压力和温度相关的位移来再现的。我们在光谱中发现了云的证据,并对luman16a光球中的FeH耗尽进行了限制。推测鲁曼16B的铁氢含量过高与预测的铁云降雨相矛盾。双柱模型模拟了L-T过渡时的斑状表面,对组分B弱优选(~1.8σ),而对组分A不利(~5.5σ)。结果表明,在Luhman 16A上有一个均匀的表面,这与该l型组分观测到的减小的变异性很好地一致。虽然目前的证据还不足以让我们得出关于Luhman 16B的任何不均匀性的结论,但未来覆盖更宽波长范围的观测可以帮助我们测试云层清除的假设。
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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