Unveiling the HD 95086 system at mid-infrared wavelengths with JWST/MIRI

M. Mâlin, A. Boccaletti, C. Perrot, P. Baudoz, Daniel Rouan, P. Lagage, Rens Waters, M. Gudel, Thomas K. Henning, B. Vandenbussche, O. Absil, D. Barrado, C. Cossou, L. Decin, M. Adrian Glauser, J. Pye, Göran Olofsson, Alistair Glasse, F. Lahuis, P. Patapis, P. Royer, S. Scheithauer, N. Whiteford, E. Serabyn, É. Choquet, Luis Colina, G. Ostlin, T. Ray
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Abstract

Mid-infrared imaging of exoplanets and disks is now possible with the coronographs of the Mid-InfraRed Instrument (MIRI) on the James Webb Space Telescope (JWST). This wavelength range unveils new features of young directly imaged systems and allows us to obtain new constraints for characterizing the atmosphere of young giant exoplanets and associated disks. These observations aim to characterize the atmosphere of the planet HD\,95086\,b by adding mid-infrared information so that the various hypotheses about its atmospheric parameters values can be unraveled. Improved images of cirsumstellar disks are provided. We present the MIRI coronagraphic imaging of the system HD\,95086 obtained with the F1065C, F1140, and F2300C filters at central wavelengths of 10.575\,mu m, 11.3\,mu m, and 23\,mu m, respectively. We explored the method for subtracting the stellar diffraction pattern in the particular case when bright dust emitting at short separation is present. Furthermore, we compared different methods for extracting the photometry of the planet. Using the atmospheric models Exo-REM and ATMO we measured the atmospheric parameters of HD\,95086\,b. The planet HD\,95086\,b is detected at the two shortest MIRI wavelengths F1065C and F1140C. The contribution from the inner disk of the system is also detected. It is similar to that in the HR\,8799 system. The outer colder belt is imaged at 23 mu m. Background objects are observed in all filters. The mid-infrared photometry provides better constraints on the atmospheric parameters. We evaluate a temperature of 850 -- 1020\,K, consistent with one previous hypothesis that only used near-infrared data. The radius measurement of 1.0 -- 1.13 Jup $ is better aligned with evolutionary models, but still smaller than predicted. These observations allow us to refute the hypothesis of a warm circumplanetary disk. HD\,95086 is one of the first exoplanetary systems to be revealed at mid-infrared wavelengths. This highlights the interests and challenges of observations at these wavelengths.
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利用 JWST/MIRI 在中红外波段揭开 HD 95086 系统的神秘面纱
詹姆斯-韦伯太空望远镜(JWST)上的中红外仪器(MIRI)的冠状成像仪现在可以对系外行星和星盘进行中红外成像。这一波长范围揭示了直接成像的年轻系统的新特征,使我们能够获得新的约束条件来描述年轻巨型系外行星和相关星盘的大气特征。这些观测旨在通过增加中红外信息来描述HD\,95086\,b行星的大气层特征,从而解开关于其大气层参数值的各种假设。我们还提供了盘状星盘的改进图像。我们展示了利用F1065C、F1140和F2300C滤光片在中心波长分别为10.575(μm)、11.3(μm)和23(μm)处获得的HD\,95086系统的近红外日冕仪成像。我们探讨了在短距离发射明亮尘埃的特殊情况下减去恒星衍射图样的方法。此外,我们还比较了提取行星光度的不同方法。利用大气模型Exo-REM和ATMO,我们测量了HD\,95086\,b的大气参数。在两个最短的近红外波长F1065C和F1140C上探测到了HD,95086\,b这颗行星。同时还探测到了来自该系统内部圆盘的贡献。这与 HR\,8799 系统的情况类似。所有滤光片都观测到了背景天体。中红外测光为大气参数提供了更好的约束。我们评估的温度为850--1020(K),与之前仅使用近红外数据的假设一致。半径测量值为1.0 - 1.13 Jup $,与演化模型比较吻合,但仍然小于预测值。这些观测数据使我们能够反驳关于温暖的环行星盘的假设。HD,95086是首批在中红外波长下发现的系外行星系统之一。这凸显了在这些波长上进行观测的意义和挑战。
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