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Analysis of the sensor characteristics of the Galileo dust detector with collimated Jovian dust stream particles

机译:准Jovian尘埃流粒子对Galileo尘埃探测器的传感器特性分析

摘要

The Dust Detector System onboard Galileo records dust impacts in the Jupiter system. Impact events are classified into four quality classes. Class 3 -- our highest quality class -- has always been noise-free and, therefore, contains only true dust impacts. Depending on the noise environment, class 2 are dust impacts or noise. Within $20 R_J$ from Jupiter (Jupiter radius, $R_J = 71,492 km$) class 2 shows clear indications for contamination by noise. We analyse the dust data from Galileo's prime Jupiter mission (1996 and 1997), separate dust impacts from noise events and derive a complete denoised set of Galileo dust data (class 2 and class 3). Collimated streams of nanometer-sized dust particles which have been detected throughout the Jovian system (Grün et al. 1998, JGR, 103, 20011-20022) are used to analyse the sensitive area and the field of view of the dust detector itself. The sensitive area for stream particles which trigger class 3 events is $110 pm 37 cm^2$. This is almost a factor of ten smaller than the total sensitive area for class 2 impacts (1,000 cm^2). Correspondingly, the field of view of the detector for class 3 stream particles is reduced from $140^{circ}$ to $96^{circ}$. The magnetometer boom and other instruments on board Galileo cause a significant shadowing of the field of view of the dust sensor. Our analysis is supplementary to ground calibrations of the dust instrument because the low masses and high speeds of the stream particles could not be achieved in the laboratory. Our new results have important consequences for the analysis of dust in the Jupiter system.
机译:伽利略号上的灰尘检测系统记录了木星系统中的灰尘影响。影响事件分为四个质量等级。 3级-我们的最高质量等级-一直无噪音,因此仅包含真正的灰尘冲击。根据噪音环境的不同,等级2为灰尘撞击或噪音。在来自木星的$ 20 R_J $之内(木星半径,$ R_J = 71,492 km $),第2类清楚地表明了被噪声污染的迹象。我们分析了伽利略的主要木星任务(1996年和1997年)中的尘埃数据,将噪声影响与噪声事件分开,并得出了一套完整的去噪伽利略尘埃数据集(2类和3类)。已在整个Jovian系统中检测到的纳米级尘埃颗粒的准直流(Grün等,1998,JGR,103,20011-20022)被用于分析尘埃探测器本身的敏感区域和视场。触发第3类事件的流粒子的敏感区域为$ 110 pm 37 cm ^ 2 $。这几乎比2类撞击的总敏感面积(1,000 cm ^ 2)小十倍。相应地,用于第3类流粒子的检测器的视场从$ 140 ^ {circ} $减少到$ 96 ^ { circ} $。伽利略(Galileo)上的磁力计臂杆和其他仪器会严重影响灰尘传感器的视场。我们的分析是对粉尘仪器地面校准的补充,因为在实验室中无法实现气流颗粒的低质量和高速度。我们的新结果对木星系统中的粉尘分析具有重要意义。

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