Zero-point renormalization of the band gap of semiconductors and insulators using the projector augmented wave method — Manuel Engel (2022) | RDL Network
Zero-point renormalization of the band gap of semiconductors and insulators using the projector augmented wave method
Physical review. B./Physical review. B 106(9)
Article 2022 English
Authors
ME
Manuel Engel
HM
Henrique Miranda
LC
Laurent Chaput
Abstract
1 min read
Electron-phonon physics has become an integral part of today's materials science world. In this work, the authors present $a\phantom{\rule{0}{0ex}}b$ $i\phantom{\rule{0}{0ex}}n\phantom{\rule{0}{0ex}}i\phantom{\rule{0}{0ex}}t\phantom{\rule{0}{0ex}}i\phantom{\rule{0}{0ex}}o$ results for the zero-point renormalization of the band gap of various semiconductors and insulators. They use a new implementation of the VASP code that utilizes the sophisticated projector augmented wave method to calculate the electron-phonon perturbation. Two complementary ways of treating the all-electron information are discussed in this context.
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