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Comparing Electron Precipitation Fluxes Calculated From Pitch Angle Diffusion Coefficients to LEO Satellite Observations

机译:比较电子沉降通量计算从螺旋角扩散系数狮子座卫星观测

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Particle precipitation is a loss mechanism from the radiation belts whereby particles trapped by the Earth's magnetic field are scattered into the loss cone due to wave-particle interactions. Energetic electron precipitation creates ozone destroying chemicals which can affect the temperatures of the polar regions, therefore it is crucial to accurately quantify this impact on the Earth's atmosphere. We use bounce-averaged pitch angle diffusion coefficients for whistler mode chorus waves, plasmaspheric hiss and atmospheric collisions to calculate magnetic local time (MLT) dependent electron precipitation inside the field of view of the Polar Orbiting Environmental Satellites (POES) T0 detector, between 26–30 March 2013. These diffusion coefficients are used in the BAS Radiation Belt Model (BAS-RBM) and this paper is a first step toward testing the loss in this model via comparison with real world data. We find the best agreement between the calculated and measured T0 precipitation at L* > 5 on the dawnside for the >30 keV electron channel, consistent with precipitation driven by lower band chorus. Additional diffusion is required to explain the flux at higher energies and on the dusk side. The POES T0 detector underestimates electron precipitation as its field of view does not measure the entire loss cone. We demonstrate the potential for utilizing diffusion coefficients to reconstruct precipitating flux over the entire loss cone. Our results show that the total precipitation can exceed that measured by the POES >30 keV electron channel by a factor that typically varies from 1 to 10 for L* = 6, 6.5, and 7.
机译:从粒子沉淀损失机制,辐射带粒子所困地球的磁场是分散的损失锥波粒相互作用造成的。高能电子降水产生臭氧破坏化学物质会影响极地地区的温度,因此它准确地量化这种影响是至关重要的地球的大气层。惠斯勒的螺旋角扩散系数模式合唱,plasmaspheric嘶嘶声大气碰撞计算磁当地时间(MLT)依赖电子降水极地轨道的视野内环境卫星(po) T0探测器,2013年3月26 - 30日之间。系数是用于BAS辐射带模型(BAS-RBM)和本文是第一步在这个模型中通过对测试损失与现实世界的数据进行比较。计算和测量了T0之间的协议降水在L * > 5的dawnside> 30 keV电子通道,符合降水由低乐队合唱。额外的扩散需要解释在更高的能量和通量黄昏。坡T0探测器低估电子降水的视野不衡量整个损失锥。利用扩散系数在整个重建沉淀通量损失锥。降水可以超过测量的坡> 30 keV电子渠道的因素通常从1到10 L * = 6, 6.5,和7。

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