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Shadows cast on the transition disk of HD 135344B - Multiwavelength VLT/SPHERE polarimetric differential imaging

机译:HD 135344B过渡盘上投射的阴影-多波长VLT / SPHERE偏振差分成像

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Context. The protoplanetary disk around the F-type star HD 135344B (SAO 206462) is in a transition stage and shows many intriguing structures both in scattered light and thermal (sub-)millimeter emission which are possibly related to planet formation processes. Aims. We aim to study the morphology and surface brightness of the disk in scattered light to gain insight into the innermost disk regions, the formation of protoplanets, planet-disk interactions traced in the surface and midplane layers, and the dust grain properties of the disk surface. Methods. We have carried out high-contrast polarimetric differential imaging (PDI) observations with VLT/SPHERE and obtained polarized scattered light images with ZIMPOL in the R and I-bands and with IRDIS in the Y and J-bands. The scattered light images and surface brightness profiles are used to study in detail structures in the disk surface and brightness variations. We have constructed a 3D radiative transfer model to support the interpretation of several detected shadow features. Results. The scattered light images reveal with unprecedented angular resolution and sensitivity the spiral arms as well as the 25 au cavity of the disk. Multiple shadow features are discovered on the outer disk with one shadow only being present during the second observation epoch. A positive surface brightness gradient is observed in the stellar irradiation corrected (r2-scaled) images in southwest direction possibly due to an azimuthally asymmetric perturbation of the temperature and/or surface density by the passing spiral arms. The disk integrated polarized flux, normalized to the stellar flux, shows a positive trend towards longer wavelengths which we attribute to large (2πa ? λ) aggregate dust grains in the disk surface. Part of the non-azimuthal polarization signal in the Uφ image of the J-band observation can be attributed to multiple scattering in the disk. Conclusions. The detected shadow features and their possible variability have the potential to provide insight into the structure of and processes occurring in the innermost disk regions. Possible explanations for the presence of the shadows include a 22° misaligned inner disk, a warped disk region that connects the inner disk with the outer disk, and variable or transient phenomena such as a perturbation of the inner disk or an asymmetric accretion flow. The spiral arms are best explained by one or multiple protoplanets in the exterior of the disk although no gap is detected beyond the spiral arms up to 1.′′0.
机译:上下文。 F型恒星HD 135344B(SAO 206462)周围的原行星盘处于过渡阶段,并且在散射光和热(亚)毫米辐射中均显示出许多有趣的结构,这可能与行星形成过程有关。目的我们旨在研究散射光下磁盘的形态和表面亮度,以深入了解磁盘的最内层区域,原行星的形成,在表面和中平面层中追踪到的行星-磁盘相互作用以及磁盘表面的尘埃颗粒特性。 。方法。我们使用VLT / SPHERE进行了高对比度偏振差分成像(PDI)观测,并获得了在R和I波段使用ZIMPOL以及在Y和J波段使用IRDIS的偏振散射光图像。散射光图像和表面亮度轮廓用于详细研究磁盘表面的结构和亮度变化。我们已经构建了3D辐射传递模型,以支持对几个检测到的阴影特征的解释。结果。散射的光图像以前所未有的角度分辨率和灵敏度显示出螺旋臂以及磁盘的25 au腔。在外盘上发现了多个阴影特征,其中一个阴影仅在第二个观测时期出现。在西南方向经恒星辐射校正(r2缩放)的图像中观察到正的表面亮度梯度,这可能是由于经过的螺旋臂对温度和/或表面密度的方位角非对称扰动造成的。归一化为恒星通量的磁盘积分极化通量显示出朝着更长波长的正趋势,这归因于磁盘表面中较大的聚集尘埃颗粒(2πa?λ)。 J波段观测的Uφ图像中的部分非方位极化信号可以归因于磁盘中的多次散射。结论。检测到的阴影特征及其可能的可变性可能有助于洞悉最内层磁盘区域的结构和发生的过程。关于阴影的存在的可能解释包括22°未对准的内部磁盘,将内部磁盘与外部磁盘连接的扭曲磁盘区域以及可变或瞬态现象,例如内部磁盘的扰动或不对称的积积流。最好用圆盘外部的一个或多个原行星来解释螺旋臂,尽管在螺旋臂上直到1。''0都没有发现间隙。

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