A Recipe for Flat Bands in Pyrochlore Materials: A Chemist's Perspective

Fuente: arXiv
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Autores principales: Katmer, Fatmagül, Jovanovic, Milena, Cano, Jennifer, Muechler, Lukas, Schoop, Leslie M.
Formato: Preprint
Publicado: 2025
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author Katmer, Fatmagül
Jovanovic, Milena
Cano, Jennifer
Muechler, Lukas
Schoop, Leslie M.
author_facet Katmer, Fatmagül
Jovanovic, Milena
Cano, Jennifer
Muechler, Lukas
Schoop, Leslie M.
contents Materials in which atoms are arranged in a pyrochlore lattice have found renewed interest, as, at least theoretically, orbitals on those lattices can form flat bands. However, real materials often do not behave according to theoretical models, which is why there has been a dearth of pyrochlore materials exhibiting flat band physics. Here we examine the conditions under which ideal 'pyrochlore bands' can exist in real materials and how to have those close to the Fermi level. We find that the simple model used in the literature does not apply to the bands at the Fermi level in real pyrochlore materials. However, surprisingly, certain oxide compounds which have oxygen orbitals inside the pyrochlore tetrahedra do exhibit near-ideal pyrochlore bands near the Fermi level. We explain this observation by a generalized tight-binding model including the oxygen orbitals. We further classify all known pyrochlore materials based on their crystal structure, band structure, and chemical characteristics and propose materials to study in future experiments.
format Preprint
id arxiv_https___arxiv_org_abs_2503_19133
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Recipe for Flat Bands in Pyrochlore Materials: A Chemist's Perspective
Katmer, Fatmagül
Jovanovic, Milena
Cano, Jennifer
Muechler, Lukas
Schoop, Leslie M.
Materials Science
Strongly Correlated Electrons
Materials in which atoms are arranged in a pyrochlore lattice have found renewed interest, as, at least theoretically, orbitals on those lattices can form flat bands. However, real materials often do not behave according to theoretical models, which is why there has been a dearth of pyrochlore materials exhibiting flat band physics. Here we examine the conditions under which ideal 'pyrochlore bands' can exist in real materials and how to have those close to the Fermi level. We find that the simple model used in the literature does not apply to the bands at the Fermi level in real pyrochlore materials. However, surprisingly, certain oxide compounds which have oxygen orbitals inside the pyrochlore tetrahedra do exhibit near-ideal pyrochlore bands near the Fermi level. We explain this observation by a generalized tight-binding model including the oxygen orbitals. We further classify all known pyrochlore materials based on their crystal structure, band structure, and chemical characteristics and propose materials to study in future experiments.
title A Recipe for Flat Bands in Pyrochlore Materials: A Chemist's Perspective
topic Materials Science
Strongly Correlated Electrons
url https://arxiv.org/abs/2503.19133