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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Cassini Ion and Neutral Mass Spectrometer data in Titan's upper atmosphere and exosphere: Observation of a suprathermal corona
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Cassini Ion and Neutral Mass Spectrometer data in Titan's upper atmosphere and exosphere: Observation of a suprathermal corona

机译:卡西尼号离子和中性的质谱数据土卫六大气层外逸层:观察suprathermal日冕

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The neutral nitrogen and methane measurements made by Ion and Neutral Mass Spectrometer during Cassini flybys T A , T B , and T 5 in Titan's upper atmosphere and exosphere are presented. Large horizontal variations are observed in the total density, recorded to be twice as large during T A as during T 5. Comparison between the atmospheric and exospheric data show evidence for the presence of a significant population of suprathermal molecules. Using a diffusion model to simultaneously fit the N2 and CH4 density profiles below 1500 km, the atmospheric structure parameters are determined, taking into account recent changes in the calibration parameters. The best fits are obtained for isothermal profiles with values 152.8 ± 4.6 K for T A , 149.0 ± 9.2 K for T B , and 157.4 ± 4.9 K for T 5, suggesting a temperature ≌5 K warmer at night than at dusk, a trend opposite to that determined by solar-driven models. Using standard exospheric theory and a Maxwellian exobase distribution, a temperature of 20 to 70 K higher would be necessary to fit the T A , T B , and egress-T 5 data above 1500 km. The suprathermal component of the corona was fit with various exobase energy distributions, using a method based on the Liouville theorem. This gave a density of suprathermals at the exobase of 4.4 ± 5.1 × 105 cm~-3 and 1.1 ± 0.9 × 105 cm~-3, and an energy deposition rate at the exobase of 1.1 ± 0.9 × 102 eV cm~-3 s~-1 and 3.9 ± 3.5 × 101 eV cm~-3 s~-1 for the hot N2 and CH4 populations, respectively. The energy deposition rate allowed us to roughly estimate escape rates for nitrogen of ≌ 7.7 ± 7.1 × 107 N cm~-2 s~-1 and for methane of ≌ .8 ± 2.1 × 107 CH4 cm~-2 s~-1. Interestingly, no suprathermal component was observed in the ingress-T 5 data.
机译:中性氮和甲烷测量通过离子和中性质谱仪卡西尼号飞越T, T B和T 5在土卫六高层大气和外逸层。大型水平中观察到的变化总密度,记录两倍大在T期间为5。大气和外逸层的数据显示的证据人口的存在suprathermal分子。同时符合N2和CH4密度概要1500公里以下,大气结构参数确定,考虑最近的标定参数的变化。最适合获得了等温概要文件值152.8±4.6 K, T, 149.0±9.2 KT B, 157.4±4.9 K T 5,暗示温度比黄昏≌5 K温暖的晚上,一个相反,由太阳能驱动的趋势模型。麦克斯韦分布范围内的温度需要适应高20到70 K TA、B T和egress-T 5数据超过1500公里。电晕是符合suprathermal组件不同范围内的能量分布,使用方法基于刘维尔定理。suprathermals密度在4.4的范围内±5.1×105厘米~ 3和1.1±0.9×105厘米~ 3,一个能量沉积速率±1.1的范围内0.9×102 eV厘米~ 3 s ~ 1和3.9±3.5×101 eV1厘米~ 3 s ~热N2和CH4的人群,分别。我们大致估计逃跑率氮≌7.7±7.1×107 N厘米~ 2 s ~ 1和甲烷的≌。8±2.1×107 CH4厘米~ 2 s ~ 1。有趣的是,没有suprathermal组件观察ingress-T 5数据。

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