首页> 外文期刊>The Astrophysical Journal. Letters >EVOLUTION OF THE FAR-INFRARED CLOUD AT TITAN'S SOUTH POLE
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EVOLUTION OF THE FAR-INFRARED CLOUD AT TITAN'S SOUTH POLE

机译:泰坦南极远红外云的演变

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摘要

A condensate cloud on Titan identified by its 220 cm(-1) far-infrared signature continues to undergo seasonal changes at both the north and south poles. In the north, the cloud, which extends from 55 N to the pole, has been gradually decreasing in emission intensity since the beginning of the Cassini mission with a half-life of 3.8 years. The cloud in the south did not appear until 2012 but its intensity has increased rapidly, doubling every year. The shape of the cloud at the south pole is very different from that in the north. Mapping in 2013 December showed that the condensate emission was confined to a ring with a maximum at 80 S. The ring was centered 4 degrees from Titan's pole. The pattern of emission from stratospheric trace gases like nitriles and complex hydrocarbons (mapped in 2014 January) was also offset by 4 degrees, but had a central peak at the pole and a secondary maximum in a ring at about 70 S with a minimum at 80 S. The shape of the gas emission distribution can be explained by abundances that are high at the atmospheric pole and diminish toward the equator, combined with correspondingly increasing temperatures. We discuss possible causes for the condensate ring. The present rapid build up of the condensate cloud at the south pole is likely to transition to a gradual decline from 2015 to 2016.
机译:通过其220 cm(-1)远红外特征识别出的泰坦上的凝结云在北极和南极均持续经历季节性变化。在北部,自卡西尼号任务开始以来,从55 N延伸到极点的云的发射强度一直在逐渐降低,其半衰期为3.8年。南部的云直到2012年才出现,但其强度迅速增加,每年翻一番。南极的云的形状与北方的云非常不同。 2013年12月的地图显示,凝结水的排放仅限于最大80 S的环。该环与Titan的极点居中4度。平流层微量气体(例如腈和复杂碳氢化合物)(2014年1月制图)的发射模式也偏移了4度,但在两极具有中心峰,在70 S的环中具有次要最大值,最小值为80S。 S.气体排放分布的形状可以通过大气极处的高丰度和向赤道处的丰度降低以及相应增加的温度来解释。我们讨论了冷凝环的可能原因。目前南极凝结云的快速建立可能会从2015年到2016年逐渐减少。

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