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Main Author: Jagannathan, Anuradha
Format: Preprint
Published: 2023
Subjects:
Online Access:https://arxiv.org/abs/2304.04409
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author Jagannathan, Anuradha
author_facet Jagannathan, Anuradha
contents The single electron spectrum and wavefunctions in quasicrystals continue to be a fascinating problem, with few known solutions, especially in two and higher dimensions. This paper investigates the energy spectra and gap structures in tight-binding models on a quasiperiodic tiling in two dimensions. By varying a continuous parameter, we follow the evolution of the band structure from the discrete molecular or atomic states, to the multifractal states well-known from previous studies. We propose a scheme for labeling gaps in finite approximants. It is equivalent in the limit of infinite systems to the one presented by Kellendonk and Putnam based on the algebraic structure of this quasiperiodic system.
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publishDate 2023
record_format arxiv
spellingShingle Closing of gaps and gap labeling and passage from molecular states to critical states in a 2D quasicrystal
Jagannathan, Anuradha
Strongly Correlated Electrons
The single electron spectrum and wavefunctions in quasicrystals continue to be a fascinating problem, with few known solutions, especially in two and higher dimensions. This paper investigates the energy spectra and gap structures in tight-binding models on a quasiperiodic tiling in two dimensions. By varying a continuous parameter, we follow the evolution of the band structure from the discrete molecular or atomic states, to the multifractal states well-known from previous studies. We propose a scheme for labeling gaps in finite approximants. It is equivalent in the limit of infinite systems to the one presented by Kellendonk and Putnam based on the algebraic structure of this quasiperiodic system.
title Closing of gaps and gap labeling and passage from molecular states to critical states in a 2D quasicrystal
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2304.04409