Simulating asteroid impacts and meteor events by high-power lasers: from the laboratory to spaceborne missions

IF 2.6 3区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS Frontiers in Astronomy and Space Sciences Pub Date : 2023-09-15 DOI:10.3389/fspas.2023.1186172
Martin Ferus, Antonín Knížek, Giuseppe Cassone, Paul B. Rimmer, Hitesh Changela, Elias Chatzitheodoridis, Inna Uwarova, Ján Žabka, Petr Kabáth, Franz Saija, Homa Saeidfirozeh, Libor Lenža, Miroslav Krůs, Lukáš Petera, Lukáš Nejdl, Petr Kubelík, Anna Křivková, David Černý, Martin Divoký, Michael Pisařík, Tomáš Kohout, Lakshika Palamakumbure, Barbora Drtinová, Klára Hlouchová, Nikola Schmidt, Zita Martins, Jorge Yáñez, Svatopoluk Civiš, Pavel Pořízka, Tomáš Mocek, Jona Petri, Sabine Klinkner
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引用次数: 0

Abstract

Meteor plasmas and impact events are complex, dynamic natural phenomena. Simulating these processes in the laboratory is, however, a challenge. The technique of laser induced dielectric breakdown was first used for this purpose almost 50 years ago. Since then, laser-based experiments have helped to simulate high energy processes in the Tunguska and Chicxulub impact events, heavy bombardment on the early Earth, prebiotic chemical evolution, space weathering of celestial bodies and meteor plasma. This review summarizes the current level of knowledge and outlines possible paths of future development.
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用高功率激光模拟小行星撞击和流星事件:从实验室到星载任务
流星等离子体和撞击事件是复杂的、动态的自然现象。然而,在实验室中模拟这些过程是一个挑战。激光诱导介质击穿技术在近50年前首次用于这一目的。从那时起,基于激光的实验已经帮助模拟了通古斯和希克苏鲁伯撞击事件中的高能过程,对地球早期的猛烈轰击,生命前的化学进化,天体和流星等离子体的太空风化。这篇综述总结了目前的知识水平,并概述了未来发展的可能路径。
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来源期刊
Frontiers in Astronomy and Space Sciences
Frontiers in Astronomy and Space Sciences ASTRONOMY & ASTROPHYSICS-
CiteScore
3.40
自引率
13.30%
发文量
363
审稿时长
14 weeks
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