论文标题

流星:彗星和小行星的光

Meteors: Light from Comets and Asteroids

论文作者

Matlovič, Pavol, Tóth, Juraj

论文摘要

在对最古老的太阳系体(彗星和小行星)的研究中,正是它们的碎片 - 流星 - 提供了最容易接近的行星材料,用于以粉尘颗粒或陨石的形式进行详细的实验室分析。航天器访问了一些小行星和彗星,并将行星际样本返回到地球,而Hayabusa 2和Osirix-Rex的任务访问了小行星Ryugu和Bennu。然而,缺乏彗星和小行星的代表性样本为直接观察流星的知识提供了更多的空间。与地球大气相撞时,流星体产生的光现象称为流星。可以使用不同的方法来观察流星,从而使我们可以研究小型星际片段,否则这些片段将是未被发现的。在整个记录的历史中都发生了许多令人印象深刻的流星阵雨,风暴和陨石的影响,现在可以更详细地预测和分析。通过理解流星的动力学,组成和物理特性,我们能够研究太阳系的形成历史和动力学演化。这项工作介绍了流星天文学的介绍,其基本过程和当前研究主题的例子。

In studies of the oldest solar system bodies - comets and asteroids - it is their fragments - meteoroids - that provide the most accessible planetary material for detailed laboratory analysis in the form of dust particles or meteorites. Some asteroids and comets were visited by spacecrafts and returned interplanetary samples to Earth, while missions Hayabusa 2 and OSIRIX-REx visiting asteroids Ryugu and Bennu are ongoing. However, the lack of representative samples of comets and asteroids opens the space to gain more knowledge from direct observations of meteoroids. At collision with the Earth's atmosphere, meteoroids produce light phenomena known as meteors. Different methods can be used to observe meteors, allowing us to study small interplanetary fragments, which would otherwise remain undetected. Numerous impressive meteor showers, storms and meteorite impacts have occurred throughout the recorded history and can now be predicted and analyzed in much more detail. By understanding the dynamics, composition and physical properties of meteoroids, we are able to study the formation history and dynamical evolution of the solar system. This work presents an introduction to meteor astronomy, its fundamental processes and examples of current research topics.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源