论文标题
使用全局流星网络数据计算光族通量
Computing optical meteor flux using Global Meteor Network data
论文作者
论文摘要
流星阵雨及其爆发是在短时间内对飞船的Meteoroid影响风险的主要来源。流星淋浴预测模型取决于历史观察结果以产生准确的预测。但是,目前在光星尺寸的世界范围内缺乏质量和持续的全球监测,使最近的一些重大爆发较差。开发了一种新型计算流星淋浴通量的方法,并将其应用于全球流星网络数据。该方法是针对先前发表的对珀尔德和双子座的观察结果进行了验证的。描述了来自视频观察的流星淋浴通量的完整数学和算法细节。作为我们方法的示例应用,提出了2021年Perseid爆发,2020-2022 Quadrantids和2020-2021 Geminids的通量测量值。 2021 Perseids的通量达到了与1991 - 1994年和2016年爆发相似的水平(Zhr $ \ sim $ 280)。四肽的通量在流的核心中显示出较高的年度变异性,而持久的背景活动的变化较小,与两个组件之间的年龄差一致。双子座在峰值时间附近显示出磁通量的双峰。
Meteor showers and their outbursts are the dominant source of meteoroid impact risk to spacecraft on short time scales. Meteor shower prediction models depend on historical observations to produce accurate forecasts. However, the current lack of quality and persistent world-wide monitoring at optical meteoroid sizes has left some recent major outbursts poorly observed. A novel method of computing meteor shower flux is developed and applied to Global Meteor Network data. The method is verified against previously published observations of the Perseids and the Geminids. The complete mathematical and algorithmic details of computing meteor shower fluxes from video observations are described. As an example application of our approach, the flux measurements of the 2021 Perseid outburst, the 2020-2022 Quadrantids, and 2020-2021 Geminids are presented. The flux of the 2021 Perseids reached similar levels to the 1991-1994 and 2016 outbursts (ZHR $\sim$ 280). The flux of the Quadrantids shows high year-to-year variability in the core of the stream while the longer lasting background activity is less variable, consistent with an age difference between the two components. The Geminids show a double peak in flux near the time of peak.