Local density of states of one-dimensional Mott insulators and charge-density wave states with a boundary.

We determine the local density of states of one-dimensional incommensurate charge-density wave states in the presence of a strong impurity potential, which is modeled by a boundary. We find that the charge-density wave gets pinned at the impurity, which results in a singularity in the Fourier transf...

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मुख्य लेखकों: Schuricht, D, Essler, F, Jaefari, A, Fradkin, E
स्वरूप: Journal article
भाषा:English
प्रकाशित: 2008
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author Schuricht, D
Essler, F
Jaefari, A
Fradkin, E
author_facet Schuricht, D
Essler, F
Jaefari, A
Fradkin, E
author_sort Schuricht, D
collection OXFORD
description We determine the local density of states of one-dimensional incommensurate charge-density wave states in the presence of a strong impurity potential, which is modeled by a boundary. We find that the charge-density wave gets pinned at the impurity, which results in a singularity in the Fourier transform of the local density of states at momentum 2k_{F}. At energies above the spin gap we observe dispersing features associated with the spin and charge degrees of freedom, respectively. In the presence of an impurity magnetic field we observe the formation of a bound state localized at the impurity. All of our results carry over to the case of 1D Mott insulators by exchanging the roles of spin and charge degrees of freedom. We discuss the implications of our result for scanning tunneling microscopy experiments on spin-gap systems such as two-leg ladder cuprates.
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spelling oxford-uuid:ddaed6a8-bba7-4d96-a29c-e41b2f6a9d0b2022-03-27T09:26:49ZLocal density of states of one-dimensional Mott insulators and charge-density wave states with a boundary.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:ddaed6a8-bba7-4d96-a29c-e41b2f6a9d0bEnglishSymplectic Elements at Oxford2008Schuricht, DEssler, FJaefari, AFradkin, EWe determine the local density of states of one-dimensional incommensurate charge-density wave states in the presence of a strong impurity potential, which is modeled by a boundary. We find that the charge-density wave gets pinned at the impurity, which results in a singularity in the Fourier transform of the local density of states at momentum 2k_{F}. At energies above the spin gap we observe dispersing features associated with the spin and charge degrees of freedom, respectively. In the presence of an impurity magnetic field we observe the formation of a bound state localized at the impurity. All of our results carry over to the case of 1D Mott insulators by exchanging the roles of spin and charge degrees of freedom. We discuss the implications of our result for scanning tunneling microscopy experiments on spin-gap systems such as two-leg ladder cuprates.
spellingShingle Schuricht, D
Essler, F
Jaefari, A
Fradkin, E
Local density of states of one-dimensional Mott insulators and charge-density wave states with a boundary.
title Local density of states of one-dimensional Mott insulators and charge-density wave states with a boundary.
title_full Local density of states of one-dimensional Mott insulators and charge-density wave states with a boundary.
title_fullStr Local density of states of one-dimensional Mott insulators and charge-density wave states with a boundary.
title_full_unstemmed Local density of states of one-dimensional Mott insulators and charge-density wave states with a boundary.
title_short Local density of states of one-dimensional Mott insulators and charge-density wave states with a boundary.
title_sort local density of states of one dimensional mott insulators and charge density wave states with a boundary
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