Prediction of a supersolid phase in high-pressure deuterium
Abstract
Supersolid is a mysterious and puzzling state of matter whose possible existence has stirred a vigorous debate among physicists for over 60 years. Its elusive nature stems from the coexistence of two seemingly contradicting properties, long-range order and superfluidity. We report computational evidence of a supersolid phase of deuterium under high pressure ( GPa) and low temperature (T 1.0 K). In our simulations, that are based on bosonic path integral molecular dynamics, we observe a highly concerted exchange of atoms while the system preserves its crystalline order. The exchange processes are favoured by the soft core interactions between deuterium atoms that form a densely packed metallic solid. At the zero temperature limit, Bose-Einstein condensation is observed as the permutation probability of deuterium atoms approaches with a finite superfluid fraction. Our study provides concrete evidence for the existence of a supersolid phase in high-pressure deuterium and could provide insights on the future investigation of supersolid phases in real materials.
Keywords
Cite
@article{arxiv.2103.13974,
title = {Prediction of a supersolid phase in high-pressure deuterium},
author = {Chang Woo Myung and Barak Hirshberg and Michele Parrinello},
journal= {arXiv preprint arXiv:2103.13974},
year = {2022}
}
Comments
5 pages, 3 figures