论文标题
2003年10月至11月的序列中,地球大气中的电离效应万圣节GLE事件
Ionization effect in the Earth's atmosphere during the sequence of October-November 2003 Halloween GLE events
论文作者
论文摘要
在过去的十年中,对沉淀高能颗粒对大气物理和化学的影响进行了广泛的研究。在大多数现有模型中,沉淀颗粒引起的电离起着至关重要的作用。对于这种影响,有必要使离子产量增加,特别是在冬季。在这项研究中,我们专注于高度穿透颗粒 - 宇宙射线。银河宇宙射线是地球平流层和对流层中电离的主要来源。另一方面,在强的太阳能颗粒事件(主要在极盖上),大气电离可能会显着增强。特定的兴趣是向最有能力的太阳能质子事件支付的,从而导致地面检测器的计数率提高,即所谓的地面水平增强(GLES)。在太阳周期23期间,观察到了一些强大的地面增强。在2003年10月至11月的万圣节活动中观察到了三个圆滑的序列。在这里,根据3-D Monte Carlo模型,我们计算了能量颗粒引起的大气电离,明确考虑了宇宙射线对银河系和太阳的起源的贡献。使用重建的太阳能颗粒光谱计算离子生产速率是海拔高度高度的函数。还计算了相对于银河宇宙射线平均的24小时和事件平均电离效应。
The effect of precipitating high-energy particles on atmospheric physics and chemistry is extensively studied over the last decade. In majority of the existing models, the precipitating particles induced ionization plays an essential role. For such effects, it is necessary to possess enhanced increase in ion production, specifically during the winter period. In this study, we focus on highly penetrating particles - cosmic rays. The galactic cosmic rays are the main source of ionization in the Earth's stratosphere and troposphere. On the other hand, the atmospheric ionization may be significantly enhanced during strong solar energetic particle events, mainly over the polar caps. A specific interest is paid to the most energetic solar proton events leading to counting rate enhancement of ground-based detectors, namely the so-called ground level enhancements (GLEs). During solar cycle 23, several strong ground level enhancements were observed. A sequence of three GLEs was observed in October-November 2003, the Halloween events. Here, on the basis of 3-D Monte Carlo model, we computed the energetic particles induced atmospheric ionization, explicitly considering the contribution of cosmic rays with galactic and solar origin. The ion production rates were computed as a function of the altitude above sea level using reconstructed solar energetic particles spectra. The 24 hours and event averaged ionization effects relative to the average due to galactic cosmic rays were also computed.