Dynamics and transport properties of Kondo insulators

A many-body theory of paramagnetic Kondo insulators is described, focusing specifically on single-particle dynamics, scattering rates, d.c. transport and optical conductivities. This is achieved by development of a non-perturbative local moment approach to the symmetric periodic Anderson model withi...

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Main Authors: Vidhyadhiraja, N, Smith, V, Logan, D, Krishnamurthy, H
Format: Journal article
Language:English
Published: 2003
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author Vidhyadhiraja, N
Smith, V
Logan, D
Krishnamurthy, H
author_facet Vidhyadhiraja, N
Smith, V
Logan, D
Krishnamurthy, H
author_sort Vidhyadhiraja, N
collection OXFORD
description A many-body theory of paramagnetic Kondo insulators is described, focusing specifically on single-particle dynamics, scattering rates, d.c. transport and optical conductivities. This is achieved by development of a non-perturbative local moment approach to the symmetric periodic Anderson model within the framework of dynamical mean-field theory. Our natural focus is the strong coupling, Kondo lattice regime; in particular the resultant `universal' scaling behaviour in terms of the single, exponentially small low-energy scale characteristic of the problem. Dynamics/transport on all relevant ($\omega, T$) scales are considered, from the gapped/activated behaviour characteristic of the low-temperature insulator through to explicit connection to single-impurity physics at high $\omega$ and/or $T$; and for optical conductivities emphasis is given to the nature of the optical gap, the temperature scale responsible for its destruction, and the consequent clear distinction between indirect and direct gap scales. Using scaling, explicit comparison is also made to experimental results for d.c. transport and optical conductivites of Ce_3Bi_4Pt_3, SmB_6 and YbB_{12}. Good agreement is found, even quantitatively; and a mutually consistent picture of transport and optics results.
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spelling oxford-uuid:08754b1a-45dc-4eac-b838-1b7d1a47b8912022-03-26T09:12:56ZDynamics and transport properties of Kondo insulatorsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:08754b1a-45dc-4eac-b838-1b7d1a47b891EnglishSymplectic Elements at Oxford2003Vidhyadhiraja, NSmith, VLogan, DKrishnamurthy, HA many-body theory of paramagnetic Kondo insulators is described, focusing specifically on single-particle dynamics, scattering rates, d.c. transport and optical conductivities. This is achieved by development of a non-perturbative local moment approach to the symmetric periodic Anderson model within the framework of dynamical mean-field theory. Our natural focus is the strong coupling, Kondo lattice regime; in particular the resultant `universal' scaling behaviour in terms of the single, exponentially small low-energy scale characteristic of the problem. Dynamics/transport on all relevant ($\omega, T$) scales are considered, from the gapped/activated behaviour characteristic of the low-temperature insulator through to explicit connection to single-impurity physics at high $\omega$ and/or $T$; and for optical conductivities emphasis is given to the nature of the optical gap, the temperature scale responsible for its destruction, and the consequent clear distinction between indirect and direct gap scales. Using scaling, explicit comparison is also made to experimental results for d.c. transport and optical conductivites of Ce_3Bi_4Pt_3, SmB_6 and YbB_{12}. Good agreement is found, even quantitatively; and a mutually consistent picture of transport and optics results.
spellingShingle Vidhyadhiraja, N
Smith, V
Logan, D
Krishnamurthy, H
Dynamics and transport properties of Kondo insulators
title Dynamics and transport properties of Kondo insulators
title_full Dynamics and transport properties of Kondo insulators
title_fullStr Dynamics and transport properties of Kondo insulators
title_full_unstemmed Dynamics and transport properties of Kondo insulators
title_short Dynamics and transport properties of Kondo insulators
title_sort dynamics and transport properties of kondo insulators
work_keys_str_mv AT vidhyadhirajan dynamicsandtransportpropertiesofkondoinsulators
AT smithv dynamicsandtransportpropertiesofkondoinsulators
AT logand dynamicsandtransportpropertiesofkondoinsulators
AT krishnamurthyh dynamicsandtransportpropertiesofkondoinsulators