Kruglanski M
Belgian Institute for Space Aeronomy, Belgium.
Radiat Meas. 1996 Nov;26(6):953-8. doi: 10.1016/s1350-4487(96)00097-2.
At low altitudes, the high-energy trapped proton fluxes are strongly anisotropic. The proton flux is controlled by the density distribution of the Earth's atmosphere that induces a steep pitch-angle distribution and an East-West effect, the latter caused by the finite size of the proton gyration radius. We have developed a software package, ANISO, to evaluate averaged energy spectra of trapped proton unidirectional fluxes for a given spacecraft orbit and attitude by deducing the angular-dependent proton flux spectra from the AP-8 omnidirectional flux. Included in the model are both the Armstrong et al. (1990) model and a model based on the Badhwar and Konradi (1990) pitch-angle distribution.
在低海拔地区,高能俘获质子通量具有很强的各向异性。质子通量受地球大气密度分布的控制,这种分布会导致陡峭的俯仰角分布和东西效应,后者是由质子回旋半径的有限大小引起的。我们开发了一个软件包ANISO,通过从AP - 8全向通量中推导与角度相关的质子通量谱,来评估给定航天器轨道和姿态下俘获质子单向通量的平均能谱。该模型包括阿姆斯特朗等人(1990年)的模型以及基于巴德瓦尔和康拉迪(1990年)俯仰角分布的模型。