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首页> 外文期刊>Icarus: International Journal of Solar System Studies >Seasonal and radial trends in Saturn's thermal plasma between the main rings and Enceladus
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Seasonal and radial trends in Saturn's thermal plasma between the main rings and Enceladus

机译:主环和土卫二之间土星热等离子体的季节性和径向趋势

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摘要

A goal of Cassini's extended mission is to examine the seasonal variations of Saturn's magnetosphere, moons, and rings. Recently we showed that the thermal plasma between the main rings and Enceladus exhibited a time dependence that we attributed to a seasonally variable source of oxygen from the main rings (Elrod, M.K., Tseng, W.-L., Wilson, R.J., Johnson, RE. [2012]. J. Geophys. Res. 117, A03207. http://dx.doi.org/10.1029/2011JA017332). Such a temporal variation was subsequently seen in the energetic ion composition (Christon, S.P., Hamilton, D.C., DiFabio, R.D., Mitchel, D.G., Krimigis, S.M., Jontof-Hutter, D.S. [2013]. J. Geophys. Res. 28. http://dx.doi.org/10.1002/jgra.50383; Christon, S.P., Hamilton, D.C., Mitchell, D.G., DiFabio, R.D., Krimigis, S.M. [2014]. J. Geophys. Res., submitted for publication). Here we incorporate the most recent measurements by the Cassini Plasma Spectrometer (CAPS) into our earlier analysis (Elrod, M.K., Tseng, W.-L, Wilson, R.J., Johnson, R.E. [2012]. J. Geophys. Res. 117, A03207. http://dx.doi.org/10.1029/2011JA017332) and our modeling (Tseng, W.-L, Johnson, R.E., Elrod, M.K. [2013a]. Planet. Space Sci. 77, 126-135) of the thermal plasma in the region between the main rings and the orbit of Enceladus. Data taken in 2012, well past equinox for which the northern side of the main rings were illuminated, appear consistent with a seasonal variation. Although the thermal plasma in this region comes from two sources that have very different radial and temporal trends, the extended ring atmosphere and the Enceladus torus, the heavy ion density is found to exhibit a steep radial dependence that is similar for the years examined. Using our chemical model, we show that this dependence requires either a radial dependence for Enceladus torus that differs significantly from recent models or, as we suggest here, enhanced heavy ion quenchingeutralization with decreasing distance from the edge of the main rings. We examine the possible physical processes and suggest that the presence of small grains and the precipitation of the inward diffusing high-energy background radiation onto the edge of the main rings play important roles. (C) 2014 Elsevier Inc. All rights reserved.
机译:卡西尼号任务的扩展目标是研究土星磁层,卫星和环的季节变化。最近,我们发现主环和土卫二之间的热等离子体表现出时间依赖性,这归因于主环的季节性氧气来源(Elrod,MK,Tseng,W.-L.,Wilson,RJ,Johnson, RE。[2012]。J. Geophys。Res.117,A03207。http://dx.doi.org/10.1029/2011JA017332)。随后在高能离子组成中观察到了这种时间变化(克里斯顿,SP,汉密尔顿,DC,DiFabio,RD,米切尔,DG,克里米吉斯,SM,乔诺特·赫特,DS [2013]。J. Geophys。Res。28。 http://dx.doi.org/10.1002/jgra.50383;Christon,SP,汉密尔顿,DC,Mitchell,DG,DiFabio,RD,Krimigis,SM [2014]。J。Geophys。Res。,提交出版) 。在这里,我们将卡西尼等离子体光谱仪(CAPS)的最新测量结果纳入了我们之前的分析中(Elrod,MK,Tseng,W.-L,Wilson,RJ,Johnson,RE [2012]。J。Geophys。Res。117, A03207。http://dx.doi.org/10.1029/2011JA017332)和我们的建模(Tseng,W.-L,Johnson,RE,Elrod,MK [2013a]。Planet。Space Sci。77,126-135)在主环和土卫二轨道之间的区域中的热等离子体。 2012年的数据远超过春分点,主环的北侧照亮了春分点,看起来与季节变化一致。尽管该区域中的热等离子体来自两个径向和时间趋势非常不同的来源,即环状大气和土卫二环面,但发现重离子密度表现出陡峭的径向依赖性,这与所研究的年份相似。使用我们的化学模型,我们证明这种依赖性需要土卫二环的径向依赖性与最近的模型有显着差异,或者如我们在这里所建议的,随着离主环边缘距离的减小,增强的重离子猝灭/中和作用。我们研究了可能的物理过程,并提出了小晶粒的存在以及向内扩散高能背景辐射到主环边缘上的向内沉淀的作用。 (C)2014 Elsevier Inc.保留所有权利。

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