C

J. V. Hollweg, E. Kaghashvili, B. Chandran
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引用次数: 0

Abstract

The nearby A4-type star Fomalhaut hosts a debris belt in the form of an eccentric ring, which is thought to be caused by dynamical influence from a giant planet companion. In 2008, a detection of a point source inside the inner edge of the ring was reported and was interpreted as a direct image of the planet, named Fomalhaut b. The detection was made at ∼600–800 nm, but no corresponding signatures were found in the near-infrared range, where the bulk emission of such a planet should be expected. Here, we present deep observations of Fomalhaut with Spitzer/IRAC at 4.5 μm, using a novel point-spread function subtraction technique based on angular differential imaging and Locally Optimized Combination of Images, in order to substantially improve the Spitzer contrast at small separations. The results provide more than an order of magnitude improvement in the upper flux limit of Fomalhaut b and exclude the possibility that any flux from a giant planet surface contributes to the observed flux at visible wavelengths. This renders any direct connection between the observed light source and the dynamically inferred giant planet highly unlikely. We discuss several possible interpretations of the total body of observations of the Fomalhaut system and find that the interpretation that best matches the available data for the observed source is scattered light from a transient or semi-transient dust cloud.
C
附近的a4型北落师门恒星有一个偏心环形式的碎片带,这被认为是由一颗巨大的伴星的动力影响造成的。2008年,在环的内缘发现了一个点源,并被解释为这颗行星的直接图像,被命名为北落师门b。探测是在~ 600-800纳米处进行的,但在近红外范围内没有发现相应的特征,在近红外范围内,这样一颗行星的大量发射应该是预期的。本文采用基于角差成像和局部优化图像组合的新颖点扩展函数减法技术,利用4.5 μm的Spitzer/IRAC对北落师门星进行了深度观测,从而大大提高了小间距Spitzer的对比度。结果提供了北落师门b的通量上限的一个数量级以上的改进,并排除了来自巨大行星表面的任何通量对可见波长观测通量的贡献的可能性。这使得观测到的光源和动态推断的巨行星之间的任何直接联系都极不可能。我们讨论了对北落师门系统整体观测的几种可能的解释,并发现与观测源的可用数据最匹配的解释是来自瞬态或半瞬态尘云的散射光。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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