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Isotopic constraints on the source of Pluto’s nitrogen and the history of atmospheric escape

机译:冥王星氮源的同位素约束和大气逸出的历史

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摘要

The origin and evolution of nitrogen in solar system bodies is an important question for understanding processes that took place during the formation of the planets and solar system bodies. Pluto has an atmosphere that is 99% molecular nitrogen, but it is unclear if this nitrogen is primordial or derived from ammonia in the protosolar nebula. The nitrogen isotope ratio is an important tracer of the origin of nitrogen on solar system bodies, and can be used at Pluto to determine the origin of its nitrogen. After evaluating the potential impact of escape and photochemistry on Pluto’s nitrogen isotope ratio (14N/15N), we find that if Pluto’s nitrogen originated as N2 the current ratio in Pluto’s atmosphere would be greater than 324 while it would be less than 157 if the source of Pluto’s nitrogen were NH3. The New Horizons spacecraft successfully visited the Pluto system in July 2015 providing a potential opportunity to measure 14N/15N in N2.
机译:氮在太阳系天体中的起源和演变是一个重要的问题,用于理解行星和太阳系天体形成过程中发生的过程。冥王星的大气中的分子氮含量为99%,但尚不清楚该氮是原生质星云中的原始氮还是源自氨。氮同位素比是太阳系物体上氮起源的重要示踪剂,可以在冥王星上用来确定氮的起源。在评估了逃逸和光化学对冥王星的氮同位素比率( 14 N / 15 N)的潜在影响后,我们发现如果冥王星的氮源为N2,则冥王星的氮原子比率如果冥王星的氮源为NH3,则大气层将大于324,而小于157。新视野号航天器于2015年7月成功访问了冥王星系统,为测量N2中的 14 N / 15 N提供了潜在的机会。

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