Spectral properties of ablating meteorite samples for improved meteoroid composition diagnostics
Pavol Matlovi\v{c}, Adriana Pisar\v{c}\'ikov\'a, Veronika Pazderov\'a,, Stefan Loehle, Juraj T\'oth, Ludovic Ferri\`ere, Peter \v{C}erm\'ak, David, Leiser, J\'er\'emie Vaubaillon, Ranjith Ravichandran

TL;DR
This study provides a spectral reference dataset of ablated meteorite samples to enhance meteoroid composition classification from meteor spectra, revealing key spectral features and temperature characteristics.
Contribution
The paper introduces a comprehensive spectral dataset of meteorite samples under simulated ablation conditions, enabling improved classification of meteoroid compositions based on spectral line analysis.
Findings
Meteorite plasma temperatures of 3700-4800 K were identified.
Distinct spectral line intensities correlate with meteorite composition.
Refractory element evaporation and minor species presence were confirmed.
Abstract
Emission spectra and diagnostic spectral features of a diverse range of ablated meteorite samples with a known composition are presented. We aim to provide a reference spectral dataset to improve our abilities to classify meteoroid composition types from meteor spectra observations. The data were obtained by ablating meteorite samples in high-enthalpy plasma wind tunnel facilities recreating conditions characteristic of low-speed meteors. Near-UV to visible-range (320 - 800 nm) emission spectra of 22 diverse meteorites captured by a high-resolution Echelle spectrometer were analyzed to identify the characteristic spectral features of individual meteorite groups. The same dataset captured by a lower-resolution meteor spectrograph was applied to compare the meteorite data with meteor spectra observations. Spectral modeling revealed that the emitting meteorite plasma was characterized by…
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