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Radar detectability studies of slow and small Zodiacal Dust Cloud Particles: I. The case of Arecibo 430 MHz meteor head echo observations

机译:慢和小黄道尘埃云粒子的雷达可探测性研究:I. Arecibo 430 MHz流星头回波观测的情况

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摘要

Recent model development of the Zodiacal Dust Cloud (ZDC) model (, ) argue that the incoming flux of meteoric material into the Earth’s upper atmosphere is mostly undetected by radars because they cannot detect small extraterrestrial particles entering the atmosphere at low velocities due to the relatively small production of electrons. In this paper we present a new methodology utilizing meteor head echo radar observations that aims to constrain the ZDC physical model by ground-based measurements. In particular, for this work, we focus on Arecibo 430 MHz observations since this is the most sensitive radar utilized for this type of observations to date. For this, we integrate and employ existing comprehensive models of meteoroid ablation, ionization and radar detection to enable accurate interpretation of radar observations and show that reasonable agreement in the hourly rates is found between model predictions and Arecibo observations when: 1) we invoke the lower limit of the model predicted flux (~16 t/d) and 2) we estimate the ionization probability of ablating metal atoms using laboratory measurements of the ionization cross sections of high speed metal atom beams, resulting in values up to two orders of magnitude lower than the extensively utilized figure reported by for low speeds meteors. However, even at this lower limit the model over predicts the slow portion of the Arecibo radial velocity distributions by a factor of 3, suggesting the model requires some revision.
机译:黄道带尘埃云(ZDC)模型的最新模型开发()认为,进入地球高层大气的流星物质通量大多无法被雷达探测到,因为由于相对速度较低,它们无法探测到低速进入大气的小外星粒子电子产量小。在本文中,我们提出了一种利用流星回波雷达观测的新方法,旨在通过地面测量来限制ZDC物理模型。特别是,在这项工作中,我们重点关注Arecibo 430 MHz观测,因为这是迄今为止用于此类观测的最灵敏的雷达。为此,我们整合并采用了现有的流星体消融,电离和雷达探测的综合模型,以能够准确地解释雷达观测结果,并表明在以下情况下,模型预测与Arecibo观测值之间的时速合理匹配:1)我们调用较低的模型预测通量的极限值(〜16 t / d)和2)我们使用实验室对高速金属原子束的电离截面的测量值来估计烧蚀金属原子的电离几率,从而将值降低了两个数量级比低速流星报道的被广泛利用的数字要高。但是,即使在此下限,该模型也可以将Arecibo径向速度分布的慢速部分预测3倍,这表明该模型需要进行一些修订。

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