<span>Diamond survival in hydrocarbon fluids under warm dense matter conditions from first principles and machine-learned molecular dynamics</span>

<span>Diamond survival in hydrocarbon fluids under warm dense matter conditions from first principles and machine-learned molecular dynamics</span>
Author(s): Maitrayee Ghosh, Shuai Zhang, S. X. Hu, Armin Bergermann, Arianna Gleason, and Siegfried GlenzerIn the depths of ice giant planets such as Neptune and Uranus, and in the inertial confinement fusion targets, chemical reactions can be significantly affected by the extreme pressure and temperature conditions. One of the most intriguing phenomena is the possible formation of diamond from hydrocarb…[Phys. Rev. B] Published Fri Sep 11, 2026

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<span>Diamond survival in hydrocarbon fluids under warm dense matter conditions from first principles and machine-learned molecular dynamics</span> | PostGoo