Ternary Phase Diagram of Nitrogen Doped Lutetium Hydrides

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Main Authors: Gubler, Moritz, Krummenacher, Marco, Finkler, Jonas A., Goedecker, Stefan
Format: Preprint
Published: 2023
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author Gubler, Moritz
Krummenacher, Marco
Finkler, Jonas A.
Goedecker, Stefan
author_facet Gubler, Moritz
Krummenacher, Marco
Finkler, Jonas A.
Goedecker, Stefan
contents This paper presents the results of an extensive structural search of ternary solids containing lutetium, nitrogen and hydrogen. Based on thousands of thermodynamically stable structures, available online, the convex hull of the formation enthalpies is constructed. To obtain the correct energetic ordering, the highly accurate RSCAN DFT functional is used in high quality all-electron calculations. In this way possible pseudopotential errors are eliminated. A novel lutetium hydride structure (HLu$_2$) that is on the convex hull is found in our search. An electron phonon analysis however shows that it is not a candidate structure for near ambient superconductivity. Besides this structure, which appears to have been missed in previous searches, possibly due to different DFT methodologies, our results agree closely with the results of previously published structure search efforts. This shows, that the field of crystal structure prediction has matured to a state where independent methodologies produce consistent and reproducible results, underlining the trustworthiness of modern crystal structure predictions. Hence it is quite unlikely that a structure, that would give rise within standard BCS theory to the superconducting properties, claimed to have been observed by Dasenbrock-Gammon et al. 10.1038/s41586-023-05742-0 , exists. This solidifies the evidence that no structure with conventional superconducting properties exists that could explain the experimental observation made by Dasenbrock-Gammon et al. 10.1038/s41586-023-05742-0
format Preprint
id arxiv_https___arxiv_org_abs_2306_07746
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Ternary Phase Diagram of Nitrogen Doped Lutetium Hydrides
Gubler, Moritz
Krummenacher, Marco
Finkler, Jonas A.
Goedecker, Stefan
Superconductivity
Materials Science
Computational Physics
This paper presents the results of an extensive structural search of ternary solids containing lutetium, nitrogen and hydrogen. Based on thousands of thermodynamically stable structures, available online, the convex hull of the formation enthalpies is constructed. To obtain the correct energetic ordering, the highly accurate RSCAN DFT functional is used in high quality all-electron calculations. In this way possible pseudopotential errors are eliminated. A novel lutetium hydride structure (HLu$_2$) that is on the convex hull is found in our search. An electron phonon analysis however shows that it is not a candidate structure for near ambient superconductivity. Besides this structure, which appears to have been missed in previous searches, possibly due to different DFT methodologies, our results agree closely with the results of previously published structure search efforts. This shows, that the field of crystal structure prediction has matured to a state where independent methodologies produce consistent and reproducible results, underlining the trustworthiness of modern crystal structure predictions. Hence it is quite unlikely that a structure, that would give rise within standard BCS theory to the superconducting properties, claimed to have been observed by Dasenbrock-Gammon et al. 10.1038/s41586-023-05742-0 , exists. This solidifies the evidence that no structure with conventional superconducting properties exists that could explain the experimental observation made by Dasenbrock-Gammon et al. 10.1038/s41586-023-05742-0
title Ternary Phase Diagram of Nitrogen Doped Lutetium Hydrides
topic Superconductivity
Materials Science
Computational Physics
url https://arxiv.org/abs/2306.07746