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A disintegrating minor planet transiting a white dwarf

机译:一颗正在分解的小行星穿越白矮星

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摘要

Most stars become white dwarfs after they have exhausted their nuclear fuel (the Sun will be one such). Between one-quarter and one-half of white dwarfs have elements heavier than helium in their atmospheres, even though these elements ought to sink rapidly into the stellar interiors (unless they are occasionally replenished). The abundance ratios of heavy elements in the atmospheres of white dwarfs are similar to the ratios in rocky bodies in the Solar System. This fact, together with the existence of warm, dusty debris disks surrounding about four per cent of white dwarfs, suggests that rocky debris from the planetary systems of white-dwarf progenitors occasionally pollutes the atmospheres of the stars. The total accreted mass of this debris is sometimes comparable to the mass of large asteroids in the Solar System. However, rocky, disintegrating bodies around a white dwarf have not yet been observed. Here we report observations of a white dwarf—WD 1145+017—being transited by at least one, and probably several, disintegrating planetesimals, with periods ranging from 4.5 hours to 4.9 hours. The strongest transit signals occur every 4.5 hours and exhibit varying depths (blocking up to 40 per cent of the star’s brightness) and asymmetric profiles, indicative of a small object with a cometary tail of dusty effluent material. The star has a dusty debris disk, and the star’s spectrum shows prominent lines from heavy elements such as magnesium, aluminium, silicon, calcium, iron, and nickel. This system provides further evidence that the pollution of white dwarfs by heavy elements might originate from disrupted rocky bodies such as asteroids and minor planets.
机译:大多数恒星在用尽核燃料后会变成白矮星(太阳便是其中之一)。在四分之一到二分之一的白矮星中,其大气中的元素重于氦气,即使这些元素应迅速沉入恒星内部(除非偶尔对其进行补充)。白矮星大气中重元素的丰度比与太阳系中岩体的丰度比相似。这个事实,加上周围约有百分之四的白矮星存在尘土飞扬的热碎片盘,表明来自白矮星祖先行星系统的岩石碎片有时会污染恒星的大气层。这些碎片的总积聚质量有时可与太阳系中大型小行星的质量相媲美。但是,尚未观察到白矮星周围的岩石崩解体。在这里,我们报告观察到一颗白矮星(WD 1145 + 017)正在被至少一个(可能是几个)分解的小行星掠过,周期从4.5小时到4.9小时不等。最强的过境信号每隔4.5小时出现一次,并且显示出不同的深度(最多阻挡恒星亮度的40%)和不对称的轮廓,这表明它是一个带有尘土飞扬排放物彗星尾的小物体。恒星上有一个尘土飞扬的碎片盘,恒星的光谱显示出镁,铝,硅,钙,铁和镍等重元素的突出线条。该系统提供了进一步的证据,证明重元素对白矮星的污染可能源自小行星和小行星等破碎的岩石体。

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