Efficient absolute interface energy calculations for heterostructures: Synergy between localized basis sets and surface passivation techniques

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Main Authors: Chandrasekharan, Sreejith Pallikkara, Apergi, Sofia, Cornet, Charles, Pedesseau, Laurent
Format: Preprint
Published: 2025
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author Chandrasekharan, Sreejith Pallikkara
Apergi, Sofia
Cornet, Charles
Pedesseau, Laurent
author_facet Chandrasekharan, Sreejith Pallikkara
Apergi, Sofia
Cornet, Charles
Pedesseau, Laurent
contents Heterostructures combining diverse physico-chemical properties are increasingly in demand for a wide range of applications in modern science and technology. However, despite their importance in materials science, accurately determining absolute interface energies remains a major challenge. Here, we present a computationally efficient framework for determining interface energies by incorporating a surface passivation technique, demonstrated using pseudo H passivation with a localized basis set method and an explicit chemical potential. This framework is applied to calculate absolute interface energies and analyze the electronic properties of quasi lattice matched and lattice mismatched III and V on Si interfaces, with results compared to conventional reconstructed surface calculations. By combining localized basis sets with surface passivation techniques, this framework allows for accurate estimation of absolute interface energies in heterogeneous material systems. This approach effectively addresses issues associated with surface reconstructions while significantly reducing computational costs within the framework of density functional theory, and moreover offers considerable potential for calculating interface energies across diverse material systems.
format Preprint
id arxiv_https___arxiv_org_abs_2506_03769
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Efficient absolute interface energy calculations for heterostructures: Synergy between localized basis sets and surface passivation techniques
Chandrasekharan, Sreejith Pallikkara
Apergi, Sofia
Cornet, Charles
Pedesseau, Laurent
Materials Science
Applied Physics
Chemical Physics
Computational Physics
Heterostructures combining diverse physico-chemical properties are increasingly in demand for a wide range of applications in modern science and technology. However, despite their importance in materials science, accurately determining absolute interface energies remains a major challenge. Here, we present a computationally efficient framework for determining interface energies by incorporating a surface passivation technique, demonstrated using pseudo H passivation with a localized basis set method and an explicit chemical potential. This framework is applied to calculate absolute interface energies and analyze the electronic properties of quasi lattice matched and lattice mismatched III and V on Si interfaces, with results compared to conventional reconstructed surface calculations. By combining localized basis sets with surface passivation techniques, this framework allows for accurate estimation of absolute interface energies in heterogeneous material systems. This approach effectively addresses issues associated with surface reconstructions while significantly reducing computational costs within the framework of density functional theory, and moreover offers considerable potential for calculating interface energies across diverse material systems.
title Efficient absolute interface energy calculations for heterostructures: Synergy between localized basis sets and surface passivation techniques
topic Materials Science
Applied Physics
Chemical Physics
Computational Physics
url https://arxiv.org/abs/2506.03769