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Discovery of concentric broken rings at sub-arcsec separations in the HD 141569A gas-rich, debris disk with VLT/SPHERE

机译:在带有VLT / SPHERE的HD 141569A富含气体的碎片盘中发现亚弧间隔处的同心破碎环

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摘要

Context. Transition disks correspond to a short stage between the young protoplanetary phase and older debris phase. Along this evolutionary sequence, the gas component disappears leaving room for a dust-dominated environment where already-formed planets signpost their gravitational perturbations. Aims: We endeavor to study the very inner region of the well-known and complex debris, but still gas-rich disk, around HD 141569A using the exquisite high-contrast capability of SPHERE at the VLT. Recent near-infrared (IR) images suggest a relatively depleted cavity within ~200 au, while former mid-IR data indicate the presence of dust at separations shorter than ~100 au. Methods: We obtained multi-wavelength images in the near-IR in J, H2, H3 and Ks-bands with the IRDIS camera and a 0.95-1.35 μm spectral data cube with the IFS. Data were acquired in pupil-tracking mode, thus allowing for angular differential imaging. Results: We discovered several new structures inside 1'', of which the most prominent is a bright ring with sharp edges (semi-major axis: 0.4'') featuring a strong north-south brightness asymmetry. Other faint structures are also detected from 0.4'' to 1'' in the form of concentric ringlets and at least one spiral arm. Finally, the VISIR data at 8.6 μm suggests the presence of an additional dust population closer in. Besides, we do not detect companions more massive than 1-3 mass of Jupiter. Conclusions: The performance of SPHERE allows us to resolve the extended dust component, which was previously detected at thermal and visible wavelengths, into very complex patterns with strong asymmetries; the nature of these asymmetries remains to be understood. Scenarios involving shepherding by planets or dust-gas interactions will have to be tested against these observations. Based on data collected at the European Southern Observatory, Chile, ESO programs 095.C-0381 and 095.C-0298.
机译:上下文。过渡盘对应于年轻的原行星相和较旧的碎片相之间的一小段时间。在这个演化过程中,气体成分消失了,为一个以尘埃为主的环境留出了空间,在该环境中,已经形成的行星便在其引力扰动上作了指示。目的:我们努力使用VLT的SPHERE的高对比度功能研究HD 141569A周围众所周知且复杂的碎片但仍然富含气体的磁盘的内部区域。最近的近红外(IR)图像表明〜200 au内的空腔相对枯竭,而以前的中红外数据表明在间隔短于〜100 au时存在粉尘。方法:我们使用IRDIS摄像机获得了J,H2,H3和Ks波段近红外的多波长图像,并使用IFS获得了0.95-1.35μm光谱数据立方体。数据是在瞳孔跟踪模式下获取的,因此可以进行角度差分成像。结果:我们在1''内发现了几个新结构,其中最突出的是一个明亮的环,具有锋利的边缘(半长轴:0.4''),具有强烈的南北亮度不对称性。还可以检测到其他微弱结构,呈同心小环和至少一个螺旋臂的形式,从0.4英寸到1英寸。最后,在8.6μm处的VISIR数据表明附近存在额外的尘埃种群。此外,我们没有检测到质量超过1-3质量的木星伴星。结论:SPHERE的性能使我们能够将先前在热和可见光波长下检测到的扩展粉尘成分解析为具有强不对称性的非常复杂的模式;这些不对称的性质还有待了解。涉及到行星或尘埃气体相互作用的场景,将不得不根据这些观察结果进行测试。根据在智利欧洲南方天文台收集的数据,ESO程序095.C-0381和095.C-0298。

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