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Derivation of density and temperature from the Cassini-Huygens CAPS electron spectrometer

机译:卡西尼-惠更斯CAPS电子光谱仪的密度和温度推导

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摘要

In this paper we present two methods to derive electron fluid parameters from the CAPS-ELS spectrometer on board the Cassini spacecraft currently in orbit around Saturn. In the first part of the paper we give a basic overview of the instrument and describe the challenges inherent in the derivation of density and temperature values using these techniques. We then describe a method to calculate electron moments by integrating the particle distribution function. We also describe a second technique in which we fit the electron energy spectrum with a Gaussian curve and use the peak energy of this curve to derive density and temperature values. We then compare the two methods with particular emphasis on their application to Cassini SOI observations in the saturnian environment and point out the limitations of the two techniques. We will show that results from the two very different methods are in agreement when the physical properties of the environment and of the observed electron populations have been inferred from inspection of the raw data. Finally we will suggest future developments that will remove these limitations.
机译:在本文中,我们介绍了两种从当前土星轨道上的卡西尼号航天器上的CAPS-ELS光谱仪推导出电子流体参数的方法。在本文的第一部分中,我们对仪器进行了基本概述,并描述了使用这些技术推导密度和温度值所固有的挑战。然后,我们描述一种通过积分粒子分布函数来计算电子矩的方法。我们还描述了第二种技术,其中我们将电子能谱与高斯曲线拟合,并使用该曲线的峰值能量来得出密度和温度值。然后,我们比较这两种方法,并特别强调它们在土星环境中对卡西尼号SOI观测的应用,并指出了这两种技术的局限性。我们将显示,当通过检查原始数据推断出环境和观察到的电子种群的物理特性时,这两种方法截然不同的结果是一致的。最后,我们将建议消除这些限制的未来发展。

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