z-logo
Premium
Space Weathering of FeS Induced via Pulsed Laser Irradiation
Author(s) -
Prince B. S.,
Magnuson M. P.,
Chaves L. C.,
Thompson M. S.,
Loeffler M. J.
Publication year - 2020
Publication title -
journal of geophysical research: planets
Language(s) - English
Resource type - Journals
eISSN - 2169-9100
pISSN - 2169-9097
DOI - 10.1029/2019je006242
Subject(s) - space weathering , irradiation , troilite , weathering , regolith , spectral slope , astrobiology , materials science , silicate , laser , mineralogy , albedo (alchemy) , meteoroid , meteorite , optics , geology , chemistry , spectral line , asteroid , geochemistry , physics , chondrite , astronomy , art , organic chemistry , performance art , nuclear physics , art history
Here we present results from pulsed laser irradiation of troilite samples in an effort to simulate space weathering on airless bodies via micrometeorite impacts. We find that the spectral trends observed in directly irradiated samples and samples with a vapor‐deposited coating are different than those found in silicate minerals previously studied. For instance, direct laser irradiation causes our troilite samples to initially brighten, but continued irradiation causes darkening and a decrease in spectral slope. In contrast, our samples with a vapor‐deposited coating show a continuous increase in spectral slope and overall albedo as the deposit thickness increases. Observation using both digital imaging and electron microscopy of our directly irradiated samples leads us to conclude that topography effects likely become important after a relatively high number of laser pulses in our directly irradiated samples, causing the apparent darkening and decrease in spectral slope. Thus, we conclude that the spectral changes observed relevant to space weathering via micrometeorite impacts are an increase in spectral slope and an increase in the albedo of troilite. Future studies will investigate whether these trends are generally representative of other sulfide‐bearing minerals and of weathering trends in other components found in the asteroid regolith.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here