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首页> 外文期刊>The Astrophysical journal >DEEP NEAR-INFRARED OBSERVATIONS OF L1014: REVEALING THE NATURE OF THE CORE AND ITS EMBEDDED SOURCE
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DEEP NEAR-INFRARED OBSERVATIONS OF L1014: REVEALING THE NATURE OF THE CORE AND ITS EMBEDDED SOURCE

机译:L1014的近红外深层观测:揭示岩心及其内藏来源的性质

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Recently, the Spitzer Space Telescope discovered L1014-IRS, a mid-infrared source with protostellar colors, toward the heretofore "starless" core L1014. We present deep near-infrared observations that show a scattered light nebula extending from L1014-IRS. This nebula resembles those typically associated with protostars and young stellar objects, tracing envelope cavities presumably evacuated by an outflow. The northern lobe of the nebula has an opening angle of ~100°, while the southern lobe is barely detected. Its morphology suggests that the bipolar cavity and inferred protostellar disk are not inclined more than 30° from an edge-on orientation. The nebula extends at least 8″ from the source at K_S, strongly suggesting that L1014-IRS is embedded within L1014 at a distance of 200 pc rather than in a more distant cloud associated with the Perseus arm at 2.6 kpc. In this case, the apparently low luminosity of L1014-IRS, 0.090 solar luminosity, is consistent with it having a substellar mass. However, if L1014-IRS is obscured by a circumstellar disk, its luminosity and inferred mass may be greater. Using near-infrared colors of background stars, we investigate characteristics of the L1014 molecular cloud core. We determine a mass of 3.6 solar mass for regions of the core with A_V ≥ 2 mag. A comparison of the radial extinction profile of L1014 with other cores suggests that L1014 may be among the most centrally condensed cores known, perhaps indicative of the earliest stages of brown dwarf or star formation processes.
机译:最近,斯皮策太空望远镜发现了L1014-IRS,这是一种具有原色的中红外光源,朝着迄今的“无星”核L1014发射。我们提出了深红外观测,显示了从L1014-IRS延伸出的散射光星云。该星云类似于通常与原恒星和年轻恒星物体相关的星云,描绘出可能被外流疏散的包膜腔。星云的北部裂片的开度约为100°,而南部裂片几乎未被发现。它的形态表明,双极腔和推断的原恒星盘从边缘指向的角度倾斜不超过30°。星云在K_S处从源延伸至少8英寸,这强烈表明L1014-IRS嵌入L1014的距离为200 pc,而不是以2.6 kpc的距离与英仙座臂相关的更远的云。在这种情况下,L1014-IRS的表面光度很低,即太阳光度为0.090,这与它具有星下质量有关。但是,如果L1014-IRS被星际盘遮挡,其亮度和推断质量可能会更大。使用背景星的近红外颜色,我们研究了L1014分子云核心的特征。我们确定A_V≥2 mag的磁芯区域的质量为3.6太阳质量。将L1014与其他核的径向消光轮廓进行比较表明,L1014可能是已知的最中心凝结的核之一,这可能表明褐矮星或恒星形成过程的最早阶段。

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