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The effects and correction of the geometric factor for the POES/MEPED electron flux instrument using a multisatellite comparison

机译:几何因子的影响和校正po /议员电子通量仪器使用多卫星比较

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Measurements from the Polar-Orbiting Environmental Satellite (POES) Medium Energy Proton and Electron Detector (MEPED) instrument are widely used in studies into radiation belt dynamics and atmospheric coupling. However, this instrument has been shown to have a complex energy-dependent response to incident particle fluxes, with the additional possibility of low-energy protons contaminating the electron fluxes. We test the recent Monte Carlo theoretical simulation of the instrument by comparing the responses against observations from an independent experimental data set. Our study examines the reported geometric factors for the MEPED electron flux instrument against the high-energy resolution Instrument for Detecting Particles (IDPs) on the Detection of Electromagnetic Emissions Transmitted from Earthquake Regions satellite when they are located at similar locations and times, thereby viewing the same quasi-trapped population of electrons. We find that the new Monte Carlo-produced geometric factors accurately describe the response of the POES MEPED instrument. We go on to develop a set of equations such that integral electron fluxes of a higher accuracy are obtained from the existing MEPED observations. These new MEPED integral fluxes correlated very well with those from the IDP instrument (>99.9% confidence level). As part of this study we have also tested a commonly used algorithm for removing proton contamination from MEPED instrument observations. We show that the algorithm is effective, providing confirmation that previous work using this correction method is valid.
机译:从极轨环境测量卫星(po)中质子和能量电子探测器(mep)仪器被广泛在研究动力学辐射带和使用大气耦合。已被证明有复杂的依赖资源吗响应入射粒子通量,额外的低能质子的可能性污染电子通量。最近的蒙特卡罗理论模拟仪器通过比较对的响应从一个独立的实验观察数据集。议员电子通量的几何因素仪器对高能量分辨率仪器检测粒子(idp)检测电磁排放从地震地区卫星传播当它们位于位置和相似次,从而查看quasi-trapped相同人口的电子。蒙特Carlo-produced几何因素准确描述的反应坡议员乐器。方程,这样的电子通量积分从现有获得更高的精度议员观察。通量与的相关性很好国内流离失所者(> 99.9%置信水平)工具。本研究我们也测试了常用算法消除质子的污染议员的观察工具。算法是有效的,提供确认以前的工作使用这个校正方法是有效的。

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