论文标题
CSCHA圆盘的形态表明存在土星质量星球
The morphology of CSCha circumbinary disk suggesting the existence of a Saturn-mass planet
论文作者
论文摘要
尽管在这种环境中形成过程中面临其他挑战,但在几个不同系统中的电路轨道中发现了行星。我们通过分析其环形磁盘来研究光谱二进制CS CHA中行星形成的可能性。研究了该系统的高角度分辨率ALMA观测值0.87mm。可见性建模和开普勒拟合用于限制CS CHA的物理特性,并将观测值与流体动力模拟进行了比较。我们的观察结果能够解决灰尘连续发射中的磁盘腔和12CO J:3-2过渡。我们发现灰尘连续盘是方位型轴对称的(沿环沿环的强度变化的9%)和低偏心度(在环的峰值亮度下为0.039)。在某些条件下,在不需要行星的情况下,可以在模拟磁盘中实现低偏心率,但是,低偏心率和轴对称性的组合与在腔边缘附近绕的土星样行星的存在一致。
Planets have been detected in circumbinary orbits in several different systems, despite the additional challenges faced during their formation in such an environment. We investigate the possibility of planetary formation in the spectroscopic binary CS Cha by analyzing its circumbinary disk. The system was studied with high angular resolution ALMA observations at 0.87mm. Visibilities modeling and Keplerian fitting are used to constrain the physical properties of CS Cha, and the observations were compared to hydrodynamic simulations. Our observations are able to resolve the disk cavity in the dust continuum emission and the 12CO J:3-2 transition. We find the dust continuum disk to be azimuthally axisymmetric (less than 9% of intensity variation along the ring) and of low eccentricity (of 0.039 at the peak brightness of the ring). Under certain conditions, low eccentricities can be achieved in simulated disks without the need of a planet, however, the combination of low eccentricity and axisymmetry is consistent with the presence of a Saturn-like planet orbiting near the edge of the cavity.