论文标题
表征低射频实验的隆纳侧面后面的无线电安静区域
Characterizing the Radio Quiet Region Behind the Lunar Farside for Low Radio Frequency Experiments
论文作者
论文摘要
在地球上进行的低射频实验受到基于地球来源的电离层效应和射频干扰(RFI)的污染。月边的月边提供了一个独特的环境,在电离层上方,RFI由于月球的存在而大大减弱了RFI。我们介绍了对周围和通过月球传播无线电波的传播的电动力学模拟,以表征Farside的衰减水平。假设具有平均恒定密度的球形月球形状,则对多达100 kHz的频率进行仿真。此外,我们研究了月球在无线电传播中的地形和密度谱的作用,并仅发现对RFI强度的小影响。由于在较高频率下执行模拟的计算需求,我们提出了一个模型,用于推断100 kHz以上的安静区域的宽度,该模型还考虑了高于月球表面的高度以及选择定义安静区域的强度阈值。我们通过Python软件包公开提供该模型,可以轻松地在轨道或表面上计算无线电安静区域的大小,从而直接适用于月球卫星以及表面任务。
Low radio frequency experiments performed on Earth are contaminated by both ionospheric effects and radio frequency interference (RFI) from Earth-based sources. The lunar farside provides a unique environment above the ionosphere where RFI is heavily attenuated by the presence of the Moon. We present electrodynamics simulations of the propagation of radio waves around and through the Moon in order to characterize the level of attenuation on the farside. The simulations are performed for a range of frequencies up to 100 kHz, assuming a spherical lunar shape with an average, constant density. Additionally, we investigate the role of the topography and density profile of the Moon in the propagation of radio waves and find only small effects on the intensity of RFI. Due to the computational demands of performing simulations at higher frequencies, we propose a model for extrapolating the width of the quiet region above 100 kHz that also takes into account height above the lunar surface as well as the intensity threshold chosen to define the quiet region. This model, which we make publicly available through a Python package, allows the size of the radio quiet region to be easily calculated both in orbit or on the surface, making it directly applicable for lunar satellites as well as surface missions.