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The Geant4 mass model of the ATHENA Silicon Pore Optics and its effect on soft proton scattering

机译:雅典娜硅孔光学的Geant4质量模型及其对软质质子散射的影响

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Given the unprecedented effective area, the new ATHENA Silicon Pore Optics (SPO) focusing technology, the dynamic and variable L2 environment, where no X-ray mission has flown up to date, a dedicated Geant4 simulation campaign is needed to evaluate the impact of low energy protons scattering on the ATHENA mirror surface and the induced residual background level on its X-ray detectors. The Geant4 mass model of ATHENA SPO is built as part of the ESA AREMBES project activities using the BoGEMMS framework. An SPO mirror module row is the atomic unit of the mass model, allowing the simulation of the full structure by means of 20 independent runs, one for each row. No reflecting coating is applied in the model: this simplification implies small differences (few percentages) in the proton flux, while reducing the number of volumes composing the mass model and the consequent simulation processing time. Thanks to the BoGEMMS configuration files, both single pores, mirror modules or the entire SPO row can be built with the same Geant,4 geometry. The conical approximation used for the Si plates transmits 20% less photons than the actual SPO design, simulated with a ray-tracing code. Assuming the same transmission reduction for protons, a 20% uncertainty can be accepted given the overall uncertainties of the input fluxes. Both Remizovich, in its elastic approximation, and Coulomb single scattering Geant4 models are used in the interaction of mono-energetic proton beams with a single SPO pore. The scattering efficiency for the first model is almost twice the efficiency obtained with the latter but for both cases we obtain similar polar and azimuthal angular distributions, with about 70-75% of scatterings generated by single or double reflections. The soft proton flux modelled for the plasma sheet region is used as input for the simulation of soft proton funneling by the full SPO mass model. A much weaker soft proton vignetting than the one observed by XMM-Newton EPIC detectors is generated by ATHENA mirrors. The residual soft proton flux reaching the focal plane, defined as a 15 cm radius, is 10~4 times lower than the input L2 soft proton population entering the mirror, at- the same energy, with rates comparable or higher than the ones observed in XMM EPIC-pn most intense soft proton flares.
机译:鉴于前所未有的有效面积,新ATHENA硅孔光学(SPO)聚焦技术,动态和可变L2环境中,没有X射线的使命已经飞到了日期,专用GEANT4模拟运动是需要评估低的影响高能质子散射ATHENA镜表面上和它的X射线检测器的感应残留背景水平上。 ATHENA SPO的GEANT4质量模型的建立与使用BoGEMMS框架ESA AREMBES项目活动的一部分。一个SPO镜模块行是质量模型的原子单元,允许充分的结构由20周独立的运行,一个用于每一行的装置的模拟。无反射涂层在模型应用:这种简化意味着在质子通量小的差异(百分之几),同时减少构成质量模型和随之而来的模拟处理时间的卷数。多亏了BoGEMMS配置文件,单细孔,镜模块或整个SPO行可以用相同的爱买,4几何建造。用于硅板圆锥形近似发送少20%的光子比实际SPO设计,具有光线跟踪代码仿真。假设质子相同的传输减少,20%的不确定性可以接受给定了输入的磁通的总体不确定性。既Remizovich,在其弹性近似,并且库仑单次散射GEANT4模型是在单能质子的相互作用使用束与单一SPO孔。为第一模型的散射效率几乎两倍与后者获得的效率,但是对于这两种情况下,我们获得类似的极性和方位角角度分布,与由单层或双层的反射而产生散射的约70-75%。建模为等离子体片区域中的软质子流被用作用于由全SPO质量模型模拟软质子漏斗的输入。比XMM牛顿EPIC探测器中观察到的一个所述的弱得多的软质子渐晕由ATHENA反射镜产生的。将残余的软质子通量到达焦平面,其定义为15厘米的半径,比输入L2软质子人口降低10〜4次进入镜,AT-Ⅲ相同的能量,具有速率相当或比所观察到的更高的XMM EPIC-PN最激烈的软质子耀斑。

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