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Warm dust resolved in the cold disk around T?Chamaeleontis with VLTI/AMBER

机译:VLTI / AMBER在T?Chamaeleontis周围的冷盘中溶解了温暖的灰尘

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Context. The transition between massive Class?II circumstellar disks and Class?III debris disks, with dust residuals, has not yet been clearly understood. Disks are expected to dissipate with time, and dust clearing in the inner regions can be the consequence of several mechanisms. Planetary formation is one of them that will possibly open a gap inside the disk. Aims. According to recent models based on photometric observations, T?Cha is expected to present a large gap within its disk, meaning that an inner dusty disk is supposed to have survived close to the star. We investigate this scenario with new near-infrared interferometric observations. Methods. We observed T?Cha in the H and K bands using the AMBER instrument at VLTI and used the MCFOST radiative transfer code to model the SED of T?Cha and the interferometric observations simultaneously and to test the scenario of an inner dusty structure. We also used a toy model of a binary to check that a companion close to the star can reproduce our observations. Results. The scenario of a close (few mas) companion cannot satisfactorily reproduce the visibilities and SED, while a disk model with a large gap and an inner ring producing the bulk of the emission (in H and K-bands) close to 0.1?AU is able to account for all the observations. Conclusions. With this study, the presence of an optically thick inner dusty disk close to the star and dominating the H and K-bands emission is confirmed. According to our model, the large gap extends up to ~7.5?AU. This points toward a companion (located at several AU) gap-opening scenario to explain the morphology of T?Cha.
机译:上下文。尚未清楚地理解大的II类星际盘与III类碎片盘之间的过渡,并带有尘埃残留。磁盘会随着时间消散,内部区域的灰尘清除可能是多种机制的结果。行星形成是其中之一,可能会在磁盘内部造成缝隙。目的根据基于光度学观测的最新模型,预计T?Cha会在其盘内出现较大的缝隙,这意味着内部尘土飞盘应该在恒星附近幸存了下来。我们用新的近红外干涉仪观测法研究这种情况。方法。我们使用VLTI的AMBER仪器在H和K波段观察了T?Cha,并使用MCFOST辐射转移代码对T?Cha的SED和干涉观测进行了建模,并测试了内部多尘结构的情况。我们还使用了双星的玩具模型来检查靠近恒星的同伴能否重现我们的观察结果。结果。接近(很少质量)伴星的场景无法令人满意地再现可见性和SED,而具有大间隙和带有内环的圆盘模型产生的大部分发射(在H和K波段)接近0.1?AU。能够解释所有观察结果。结论。通过这项研究,可以确认存在一个光学厚度较厚的内部尘埃盘,该尘埃盘靠近恒星,并主导了H和K波段的发射。根据我们的模型,较大的间隙可扩展到约7.5?AU。这指向了一个同伴(位于几个AU处)的缺口开放场景,以解释T?Cha的形态。

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