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Interpretation of high rate dust measurements with the Cassini dust detector CDA

机译:卡西尼粉尘检测仪CDA对高粉尘测量的解释

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For two years the cosmic dust analyser (CDA) onboard the Cassini spacecraft has been exploring the dust environment of Saturn [Srama, R., Kempf, S., Moragas-Klostermeyer, G., Helfert, S., Ahrens, T. J., Altobelli, N., Auer, S., Beckmann, U., Bradley, J.G., Burton, M., Dikarev, V.V., Economou, T., Fechtig, H., Green, S.F., Grande, M., Havnes, O., Hillier, J.K., Horanyi, M., Igenbergs, E., Jessberger, E.K., Johnson, T.V., Krueger, H., Matt, G., McBride, N., Mocker, A., Lamy, P., Linkert, D., Linkert, G., Lura, F., McDonnell, J.A.M., Moehlmann, D., Morfill, G.E., Postberg, F., Roy, M., Schwehm, G.H., Spahn, F., Svestka, J., Tschernjawski, V., Tuzzolino, A.J., Waesch, R., Gruen, E., 2006. In situ dust measurements in the inner Saturnian system. Planet. Space Sci. 54, 967-987]. One major goal of the CDA instruments is to investigate Saturn's enigmatic E ring-the largest known planetary ring of the solar system. The sophisticated main detector (dust analyser-DA) of CDA is rather slow when processing the impact data, and limits the detectable number of impacts to 60min~(-1) [Srama, R., Ahrens, T., Altobelli, N., Auer, S., Bradley, J., Burton, M., Dikarev, V., Economou, T., Fechtig, H., Goerlich, M., Grande, M., Graps, A., Gruen, E., Havnes, O., Helfert, S., Horanyi, M., Igenbergs, E., Jebeberger, E., Johnson, T., Kempf, S., Krivov, A., Krueger, H., Mocker-Ahlreep, A., Moragas-Klostermeyer, G., Lamy, P., Landgraf, M., Linkert, D., Linkert, G., Lura, F., McDonnel, J., Moehlmann, D., Morfill, G., Mueller, M., Roy, M., Schaefer, G., Schlotzhauer, G., Schwehm, G., Spahn, F., Stuebig, M., Svestka, J., Tschernjawski, V., Tuzzolino, A., Waesch, R., Zook, H., 2004. The Cassini cosmic dust analyser. Space Sci. Rev. 114, 465-518]. However, measurements by the CDA high rate detector (HRD) imply that the DA impact rates in the inner core of the E ring exceed 1000 min~(-1). Clearly, to investigate dust-rich environments with the DA requires knowledge about the instrument performance at high impact rates. In this paper, we study the dependence of the number of detected impacts on the average impact rate arising from a Poisson process. We demonstrate the validity of the resulting expressions by comparing them with Monte Carlo (MC) simulations of the DA performance. We argue that DA measurements provide meaningful impact rate estimates even if the DA detects slightly less than 60 impacts per minute. Finally, we apply the derived expressions to a DA E ring measurement.
机译:两年来,卡西尼号飞船上的宇宙尘埃分析仪(CDA)一直在探索土星的尘埃环境[Srama,R.,Kempf,S.,Moragas-Klostermeyer,G.,Helfert,S.,Ahrens,TJ,Altobelli ,N.,Auer,S.,Beckmann,U.,Bradley,JG,Burton,M.,Dikarev,VV,Economou,T.,Fechtig,H.,Green,SF,Grande,M.,Havnes,O. ,希勒(Hillier),JK,霍兰伊(Horanyi),M。伊甘贝格(Egenbergs),E。,杰斯伯格(Eessberger),EK,约翰逊(Johnson),电视,克鲁格(Krueger),H。,马特(Matt),G。麦克布赖德(N.) D.,Linkert,G.,Lura,F.,McDonnell,JAM,Moehlmann,D.,Morfill,GE,Postberg,F.,Roy,M.,Schwehm,GH,Spahn,F.,Svestka,J. Tschernjawski,V.,Tuzzolino,AJ,Waesch,R.,Gruen,E.,2006。内部土星系统中的原位灰尘测量。行星。太空科学54,967-987]。 CDA仪器的主要目标之一是研究土星的神秘E环-太阳系中最大的已知行星环。 CDA的高级主检测器(灰尘分析仪-DA)在处理撞击数据时相当慢,并将撞击的可检测次数限制为60min〜(-1)[Srama,R.,Ahrens,T.,Altobelli,N.。 ,Auer,S.,Bradley,J.,Burton,M.,Dikarev,V.,Economou,T.,Fechtig,H.,Goerlich,M.,Grande,M.,Graps,A.,Gruen,E. ,Havnes,O.,Helfert,S.,Horanyi,M.,Igenbergs,E.,Jebeberger,E.,Johnson,T.,Kempf,S.,Krivov,A.,Krueger,H.,Mocker-Ahlreep, A.,Moragas-Klostermeyer,G.,Lamy,P.,Landgraf,M.,Linkert,D.,Linkert,G.,Lura,F.,McDonnel,J.,Moehlmann,D.,Morfill,G., Mueller,M.,Roy,M.,Schaefer,G.,Schlotzhauer,G.,Schwehm,G.,Spahn,F.,Stuebig,M.,Svestka,J.,Tschernjawski,V.,Tuzzolino,A., Waesch,R.,Zook,H.,2004年。卡西尼号宇宙尘埃分析仪。太空科学Rev. 114,465-518]。但是,通过CDA高速率检测器(HRD)进行的测量表明,E环内芯的DA冲击速率超过1000 min〜(-1)。显然,要使用DA来研究粉尘丰富的环境,需要了解仪器在高冲击率下的性能。在本文中,我们研究了泊松过程中检测到的撞击数量与平均撞击率之间的关系。通过与DA性能的蒙特卡洛(MC)仿真进行比较,我们证明了所得表达式的有效性。我们认为,即使DA每分钟检测到的影响略少于60次,DA度量也可以提供有意义的影响率估算。最后,我们将导出的表达式应用于DA E环测量。

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