论文标题

尘土飞扬的端子伴侣HD 206893 b的双子座行星成像仪光谱

Gemini Planet Imager Spectroscopy of the Dusty Substellar Companion HD 206893 B

论文作者

Ward-Duong, K., Patience, J., Follette, K., De Rosa, R. J., Rameau, J., Marley, M., Saumon, D., Nielsen, E. L., Rajan, A., Greenbaum, A. Z., Lee, J., Wang, J. J., Czekala, I., Duchêne, G., Macintosh, B., Ammons, S. Mark, Bailey, V. P., Barman, T., Bulger, J., Chen, C., Chilcote, J., Cotten, T., Doyon, R., Esposito, T. M., Fitzgerald, M. P., Gerard, B. L., Goodsell, S. J., Graham, J. R., Hibon, P., Hom, J., Hung, L. -W., Ingraham, P., Kalas, P., Konopacky, Q., Larkin, J. E., Maire, J., Marchis, F., Marois, C., Metchev, S., Millar-Blanchaer, M. A., Oppenheimer, R., Palmer, D., Perrin, M., Poyneer, L., Pueyo, L., Rantakyrö, F. T., Ren, B., Ruffio, J. -B., Savransky, D., Schneider, A. C., Sivaramakrishnan, A., Song, I., Soummer, R., Tallis, M., Thomas, S., Wallace, J. Kent, Wiktorowicz, S., Wolff, S.

论文摘要

我们提出了HD 206893 B的新近红外双子星球成像仪(GPI)光谱,这是其F5V恒星碎屑磁盘中绕的旋转的旋转的旋转的旋转的伴侣。 $ j $,$ h $,$ k1 $和$ k2 $的光谱从GPI展示了该物体的特殊红色,将其确认为迄今为止观察到的最红色的替代物体。整个红外线的显着通量增加为现有网格建模而充满挑战的氛围。最佳拟合值从1200 K到1800 K的有效温度不等,对数($ G $)的3.0到5.0不等,具体取决于适合哪个单个波长频带以及应用哪个模型套件。可以通过调用次级微米粉尘颗粒的高空层来部分核对伴侣的极端发红,类似于应用于特殊的红色田间l-warf群体的DEDEDDENDING方法。但是,将HD 206893 B光谱与最红色的低重力L-DWARF光谱进行调解仍然需要额外的大气灰尘的贡献,这可能是由于伴侣所在的碎屑盘环境所致。从四年的天文监测中进行的轨道配件与$ \ sim $ 30年,轨道倾斜度为147 $^{\ circ} $,以及10 au的半隔轴轴,均超过估计的磁盘内半径$ \ $ \ sim $ 50 au。作为少数几个内部磁盘成像的实体同伴之一,该系统的特性为伴侣盘相互作用提供了重要的动态约束,并为子宫和行星大气研究提供了基准。

We present new near-infrared Gemini Planet Imager (GPI) spectroscopy of HD 206893 B, a substellar companion orbiting within the debris disk of its F5V star. The $J$, $H$, $K1$, and $K2$ spectra from GPI demonstrate the extraordinarily red colors of the object, confirming it as the reddest substellar object observed to date. The significant flux increase throughout the infrared presents a challenging atmosphere to model with existing grids. Best-fit values vary from 1200 K to 1800 K for effective temperature and from 3.0 to 5.0 for log($g$), depending on which individual wavelength band is fit and which model suite is applied. The extreme redness of the companion can be partially reconciled by invoking a high-altitude layer of sub-micron dust particles, similar to dereddening approaches applied to the peculiar red field L-dwarf population. However, reconciling the HD 206893 B spectra with even those of the reddest low-gravity L-dwarf spectra still requires the contribution of additional atmospheric dust, potentially due to the debris disk environment in which the companion resides. Orbit fitting from four years of astrometric monitoring is consistent with a $\sim$30-year period, orbital inclination of 147$^{\circ}$, and semimajor axis of 10 au, well within the estimated disk inner radius of $\sim$50 au. As one of very few substellar companions imaged interior to a circumstellar disk, the properties of this system offer important dynamical constraints on companion-disk interaction and provide a benchmark for substellar and planetary atmospheric study.

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