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Planetary Systems around Close Binary Stars: The Case of the Very Dusty, Sun-like, Spectroscopic Binary BD+20 307

机译:紧密双星周围的行星系统:非常尘埃状,类似太阳的光谱双星BD + 20 307

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摘要

Field star BD+20 307 is the dustiest known main-sequence star, based on the fraction of its bolometric luminosity, 4%, that is emitted at infrared wavelengths. The particles that carry this large infrared luminosity are unusually warm, comparable to the temperature of the zodiacal dust in the solar system, and their existence is likely to be a consequence of a fairly recent collision of large objects such as planets or planetary embryos. Thus, the age of BD+20 307 is potentially of interest in constraining the era of terrestrial planet formation. The present project was initiated with an attempt to derive this age using the Chandra X-Ray Observatory to measure the X-ray flux of BD+20 307 in conjunction with extensive photometric and spectroscopic monitoring observations from Fairborn Observatory. However, the recent realization that BD+20 307 is a short-period, double-line, spectroscopic binary whose components have very different lithium abundances vitiates standard methods of age determination. We find the system to be metal-poor; this, combined with its measured lithium abundances, indicates that BD+20 307 may be several to many Gyr old. BD+20 307 affords astronomy a rare peek into a mature planetary system in orbit around a close binary star (because such systems are not amenable to study by the precision radial velocity technique).
机译:BD + 20 307场星是已知的尘土飞扬的主要序列星,基于其辐射热强度的4%分数,它是在红外波长下发射的。带有这种大的红外发光度的粒子异常温暖,与太阳系中黄道尘埃的温度相当,它们的存在很可能是由于最近大型物体(例如行星或行星胚胎)碰撞的结果。因此,BD + 20 307的年龄可能在限制地球行星形成的时代受到关注。本项目的启动是为了尝试使用钱德拉X射线天文台推算这个年龄,并结合费尔伯恩天文台的广泛的光度和光谱监测观测来测量BD + 20 307的X射线通量。然而,最近认识到BD + 20 307是一种短周期,双谱线光谱双星,其组分具有非常不同的锂丰度,这使年龄确定的标准方法无效。我们发现该系统的金属贫乏;这与测得的锂丰度相结合,表明BD + 20 307可能存在数个到许多Gyr的年龄。 BD + 20 307为天文学提供了一个难得的机会,可以窥见围绕一个密闭双星的轨道上的成熟行星系统(因为这样的系统不适合通过精密径向速度技术研究)。

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