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SPHERE view of the jet and the envelope of RY Tauri

机译:喷气机的全景视图和RY Tauri的包络线

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Context. Jets are rarely associated with pre-main sequence intermediate-mass stars. This contrasts with the frequent detection of jets in lower mass or younger stars. Optical and near-IR observations of jet-driving sources are often hindered by the presence of a natal envelope. Aims. Jets around partly embedded sources are a useful diagnostic to constrain the geometry of the concealed protoplanetary disk. We intend to clarify how the jet-driving mechanisms are affected by both spatial anisotropies and episodic variations at the (sub-)au scale from the star. Methods. We obtained a rich set of high-contrast VLT/SPHERE observations from 0.6 to 2.2 μ m of the young intermediate-mass star RY Tau. Given the proximity to the Sun of this source, our images have the highest spatial resolution ever obtained for an atomic jet (down to ~4 au). Results. Optical observations in polarized light show no sign of the protoplanetary disk detected by ALMA. Instead, we observed a diffuse signal resembling a remnant envelope with an outflow cavity. The jet is detected in the H α , [S? II ] at 1.03 μ m, He? I at 1.08 μ m, and [Fe? II ] lines in the 1.25 μ m and 1.64 μ m. The jet appears to be wiggling and its radial width increasing with the distance is complementary to the shape of the outflow cavity suggesting a strong interaction with jet and envelope. Through the estimated tangential velocity (~100 km s~(?1)), we revealed a possible connection between the launching time of the jet substructures and the stellar activity of RY Tau. Conclusions. RY Tau is at an intermediate stage toward the dispersal of the natal envelope. This source shows episodic increases of mass accretion and ejection similarly to other known intermediate-mass stars. The amount of observed jet wiggle is consistent with the presence of a precessing disk warp or misaligned inner disk that would be induced by an unseen planetary or sub-stellar companion at sub- or few-au scales respectively. The high disk mass of RY Tau and of two other jet-driving intermediate-mass stars, HD 163296 and MWC480, suggests that massive, full disks are more efficient at launching prominent jets.
机译:上下文。喷气机很少与主序前中等质量恒星相关。这与质量较低或更年轻的恒星中的射流的频繁检测形成对比。出生时的包膜通常会阻碍对喷气驱动源的光学和近红外观测。目的围绕部分嵌入源的射流是一种有用的诊断方法,可用于约束隐藏的原行星盘的几何形状。我们打算阐明恒星在(亚)au尺度上的空间各向异性和情境变化如何影响喷射驱动机制。方法。我们获得了一组丰富的高对比度VLT / SPHERE观测值,这些观测值位于0.6至2.2μm的年轻中间质量恒星RY Tau。考虑到该光源与太阳的接近度,我们的图像具有原子射流有史以来最高的空间分辨率(低至约4 au)。结果。在偏振光中的光学观测结果表明,ALMA未检测到原行星盘的迹象。取而代之的是,我们观察到一个弥散的信号,类似于带有流出腔的残余包络线。在Hα中检测到喷射流,[S? II]在1.03μm,He?我在1.08微米,[铁? II]线在1.25μm和1.64μm。射流似乎在摆动,其径向宽度随距离的增加而增加,与流出腔的形状互补,表明与射流和包络线的相互作用很强。通过估计的切向速度(〜100 km s〜(?1)),我们揭示了射流子结构的发射时间与RY Tau的恒星活动之间可能存在联系。结论。 RY Tau处于即将散播出生包膜的中间阶段。与其他已知的中等质量恒星相似,该资料显示出质量积聚和射出的爆发性增加。观测到的喷气摆动的量与盘前弯曲或内盘未对准是一致的,这将由看不见的行星或亚星际伴星分别以亚或几au尺度引起。 RY Tau和另外两个喷气驱动的中等质量恒星HD 163296和MWC480的高圆盘质量表明,巨大的全圆盘在发射突出的喷气机时效率更高。

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