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Discovery of Young, Isolated Planetary Mass Objects in the σ Orionis Star Cluster

机译:在σOrionis星团中发现年轻的孤立行星质量物体

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We present the discovery by optical and near-infrared imaging of an extremely red, low-luminosity population of isolated objects in the young, nearby stellar cluster around the multiple, massive star σ Orionis. The proximity (352 parsecs), youth (1 million to 5 million years), and low internal extinction make this cluster an ideal site to explore the substellar domain from the hydrogen mass limit down to a few Jupiter masses. Optical and near-infrared low-resolution spec-troscopy of three of these objects confirms the very cool spectral energy distribution (atmospheric effective temperatures of 1700 to 2200 kelvin) expected for cluster members with masses in the range 5 to 15 times that of Jupiter. Like the planets of the solar system, these objects are unable to sustain stable nuclear burning in their interiors, but in contrast they are not bound to stars. This new kind of isolated giant planet, which apparently forms on time scales of less than a few million years, offers a challenge to our understanding of the formation processes of planetary mass objects.
机译:通过光学和近红外成像,我们发现了一个巨大的红色,低发光度的孤立物体的发现,这些物体位于多颗大质量恒星σOrionis周围的年轻,邻近恒星簇中。邻近区域(352秒差距),青年时期(100万至500万年)和内部低灭绝使得该星团成为探索从氢质量极限到少数木星质量的星下域的理想场所。这些物体中的三个的光学和近红外低分辨率光谱证实了质量在木星的5至15倍范围内的星团成员所期望的非常凉爽的光谱能量分布(大气有效温度为1700至2200开尔文)。就像太阳系的行星一样,这些物体无法在其内部维持稳定的核燃烧,但相反,它们并不与恒星结合。这种新型的孤立的巨型行星,显然是在不到几百万年的时间尺度上形成的,这对我们对行星质量物体形成过程的理解提出了挑战。

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