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Cutoff Latitudes of Solar Proton Events Measured by GPS Satellites

机译:截止纬度太阳质子事件的测量通过GPS卫星

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Solar energetic particles (SEPs), one of the main causes of particle radiation in interplanetary space, can disrupt radio communication, induce spacecraft failures and change the heating and cooling rates in the atmosphere among others. To investigate the impact of SEPs and more specifically solar proton events (SPEs), we established a cutoff latitude database based on energetic particle data from Combined X-ray Dosimeters (CXDs) on board the Global Positioning System (GPS) spacecraft. Introducing a novel normalization method involving proton fluxes from the Geostationary Operational Environmental Satellites enabled us to include the CXD data from its introduction (2001) onwards. The database contains 5714 cutoff latitudes divided over six energies between 18 and 115 MeV which occur during 58 SPEs from 2001 to 2015. Based on the database, a cutoff latitude parameterization as a function of solar wind dynamic pressure and geomagnetic indices K_p and Dst is created for each energy. Moreover, comparisons to previous studies on energetic particle data from the Polar Orbiting Environmental Satellites have been performed to put the GPS data into perspective. A 1–2° poleward offset is found for the GPS based cutoff latitude models, for which several causes are discussed. Furthermore, the limitation of GPS data to geomagnetic latitudes above 60° should be considered. All in all, the usage of the long time span of GPS data in this study combined with its recent release (2016) opens up a new range of studies involving GPS energetic particle data such as investigating longterm trends with respect to our solar cycle or magnetospheric trends.
机译:太阳高能粒子(SEPs),最主要的一个导致星际的粒子辐射空间,可以干扰无线电通信,诱导航天器故障和改变加热和大气中冷却率。调查的影响SEPs等等特别是太阳质子事件(spe),我们建立了一个基于截止纬度数据库高能粒子结合x射线的数据测试仪(CXDs)全球定位系统(GPS)航天器。归一化法涉及质子通量对地静止环境工作卫星使我们包括CXD数据从介绍(2001)开始。数据库包含5714截止纬度划分在六18 - 115伏之间的能量从2001年到2015年发生在58 spe。截止纬度参数化数据库动态压力和太阳风的函数地磁指数K_p, Dst创建每个能量。从极地研究高能粒子数据轨道环境卫星把GPS数据执行。1 - 2°向极抵消是基于GPS的发现截止纬度模型,这其中有许多原因进行了讨论。数据地磁纬度高于60°考虑。时间跨度的GPS数据研究结合它最近发布(2016)开辟了一个新的范围研究涉及的GPS高能粒子数据如调查长期趋势对我们的太阳周期或磁性层的的趋势。

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