Morphology of Meteorite Surfaces Ablated by High-Power Lasers: Review and Applications

Author:

Křivková AnnaORCID,Laitl VojtěchORCID,Chatzitheodoridis EliasORCID,Petera Lukáš,Kubelík Petr,Knížek Antonín,Saeidfirozeh HomaORCID,Drtinová Barbora,Čuba Václav,Páclík Dan,Mocek Tomáš,Brajer Jan,Kaufman JanORCID,Divoký MartinORCID,Koukal Jakub,Dudžák Roman,Schmidt Nikola,Boháček Petr,Civiš Svatopluk,Lenža Libor,Krůs Miroslav,Ferus Martin

Abstract

Under controlled laboratory conditions, lasers represent a source of energy with well-defined parameters suitable for mimicking phenomena such as ablation, disintegration, and plasma formation processes that take place during the hypervelocity atmospheric entry of meteoroids. Furthermore, lasers have also been proposed for employment in future space exploration and planetary defense in a wide range of potential applications. This highlights the importance of an experimental investigation of lasers’ interaction with real samples of interplanetary matter: meteorite specimens. We summarize the results of numerous meteorite laser ablation experiments performed by several laser sources—a femtosecond Ti:Sapphire laser, the multislab ceramic Yb:YAG Bivoj laser, and the iodine laser known as PALS (Prague Asterix Laser System). The differences in the ablation spots’ morphology and their dependence on the laser parameters are examined via optical microscopy, scanning electron microscopy, and profilometry in the context of the meteorite properties and the physical characteristics of laser-induced plasma.

Funder

Czech Science Foundation

ERDF/ESF "Centre of Advanced Applied Sciences"

Technology Agency of the Czech Republic

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

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