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首页> 外文期刊>Astronomy and astrophysics >The SPHERE view of the planet-forming disk around HD 100546
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The SPHERE view of the planet-forming disk around HD 100546

机译:围绕HD 100546的行星形成盘的SPHERE视图

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Context. The mechanisms governing planet formation are not fully understood. A new era of high-resolution imaging of protoplanetary disks has recently started, thanks to new instruments such as SPHERE, GPI, and ALMA. The planet formation process can now be directly studied by imaging both planetary companions embedded in disks and their effect on disk morphology. Aims. We image disk features that could be potential signs of planet-disk interaction with unprecedented spatial resolution and sensitivity. Two companion candidates have been claimed in the disk around the young Herbig Ae/Be star HD 100546. Thus, this object serves as an excellent target for our investigation of the natal environment of giant planets. Methods. We exploit the power of extreme adaptive optics operating in conjunction with the new high-contrast imager SPHERE to image HD 100546 in scattered light. We obtained the first polarized light observations of this source in the visible (with resolution as fine as 2 AU) and new H and K band total intensity images that we analyzed with the pynpoint package. Results. The disk shows a complex azimuthal morphology, where multiple scattering of photons most likely plays an important role. High brightness contrasts and arm-like structures are ubiquitous in the disk. A double-wing structure (partly due to angular differential imaging processing) resembles a morphology newly observed in inclined disks. Given the cavity size in the visible (11 AU), the CO emission associated to the planet candidate c might arise from within the circumstellar disk. We find an extended emission in the K band at the expected location of b . The surrounding large-scale region is the brightest in scattered light. There is no sign of any disk gap associated to b .
机译:上下文。尚未完全了解控制行星形成的机制。得益于SPHERE,GPI和ALMA等新仪器,原行星盘高分辨率成像的新时代已经开始。现在可以通过对嵌在磁盘中的行星伴星及其对磁盘形态的影响进行成像,直接研究行星的形成过程。目的我们对磁盘特征进行成像,这些特征可能是行星-磁盘相互作用的潜在迹象,具有空前的空间分辨率和灵敏度。在年轻的Herbig Ae / Be星HD 100546周围的磁盘中声称有两个伴生候选物。因此,该物体成为我们研究巨型行星的诞生环境的绝佳目标。方法。我们利用与新的高对比度成像仪SPHERE结合使用的极端自适应光学器件的功能,以在散射光下成像HD 100546。我们在可见光(分辨率高达2 AU)和新的H和K波段总强度图像中获得了该光源的第一个偏振光观察结果,我们使用了Pynpoint软件包对其进行了分析。结果。圆盘显示出复杂的方位角形态,其中光子的多次散射最有可能发挥重要作用。高亮度对比度和类似臂的结构在磁盘中无处不在。双翼结构(部分归因于角度差分成像处理)类似于在倾斜盘中新近观察到的形态。给定可见光腔的大小(11 AU),与候选行星c相关的CO排放可能来自星际盘。我们在b的预期位置发现了K波段的扩展发射。周围的大型区域在散射光下最亮。没有迹象表明与b相关的任何磁盘间隙。

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