Measurement of coherent polarons in the strongly coupled antiferromagnetically ordered iron-chalcogenide Fe1.02Te using angle-resolved photoemission spectroscopy.

The nature of metallicity and the level of electronic correlations in the antiferromagnetically ordered parent compounds are two important open issues for the iron-based superconductivity. We perform a temperature-dependent angle-resolved photoemission spectroscopy study of Fe(1.02)Te, the parent co...

Szczegółowa specyfikacja

Opis bibliograficzny
Główni autorzy: Liu, Z, He, R, Lu, D, Yi, M, Chen, Y, Hashimoto, M, Moore, R, Mo, S, Nowadnick, E, Hu, J, Liu, T, Mao, Z, Devereaux, T, Hussain, Z, Shen, Z
Format: Journal article
Język:English
Wydane: 2013
_version_ 1826260671138889728
author Liu, Z
He, R
Lu, D
Yi, M
Chen, Y
Hashimoto, M
Moore, R
Mo, S
Nowadnick, E
Hu, J
Liu, T
Mao, Z
Devereaux, T
Hussain, Z
Shen, Z
author_facet Liu, Z
He, R
Lu, D
Yi, M
Chen, Y
Hashimoto, M
Moore, R
Mo, S
Nowadnick, E
Hu, J
Liu, T
Mao, Z
Devereaux, T
Hussain, Z
Shen, Z
author_sort Liu, Z
collection OXFORD
description The nature of metallicity and the level of electronic correlations in the antiferromagnetically ordered parent compounds are two important open issues for the iron-based superconductivity. We perform a temperature-dependent angle-resolved photoemission spectroscopy study of Fe(1.02)Te, the parent compound for iron chalcogenide superconductors. Deep in the antiferromagnetic state, the spectra exhibit a "peak-dip-hump" line shape associated with two clearly separate branches of dispersion, characteristics of polarons seen in manganites and lightly doped cuprates. As temperature increases towards the Néel temperature (T(N)), we observe a decreasing renormalization of the peak dispersion and a counterintuitive sharpening of the hump linewidth, suggestive of an intimate connection between the weakening electron-phonon (e-ph) coupling and antiferromagnetism. Our finding points to the highly correlated nature of the Fe(1.02)Te ground state featured by strong interactions among the charge, spin, and lattice and a good metallicity plausibly contributed by the coherent polaron motion.
first_indexed 2024-03-06T19:09:23Z
format Journal article
id oxford-uuid:16407300-47d0-4ae8-aad7-f98da287026f
institution University of Oxford
language English
last_indexed 2024-03-06T19:09:23Z
publishDate 2013
record_format dspace
spelling oxford-uuid:16407300-47d0-4ae8-aad7-f98da287026f2022-03-26T10:30:16ZMeasurement of coherent polarons in the strongly coupled antiferromagnetically ordered iron-chalcogenide Fe1.02Te using angle-resolved photoemission spectroscopy.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:16407300-47d0-4ae8-aad7-f98da287026fEnglishSymplectic Elements at Oxford2013Liu, ZHe, RLu, DYi, MChen, YHashimoto, MMoore, RMo, SNowadnick, EHu, JLiu, TMao, ZDevereaux, THussain, ZShen, ZThe nature of metallicity and the level of electronic correlations in the antiferromagnetically ordered parent compounds are two important open issues for the iron-based superconductivity. We perform a temperature-dependent angle-resolved photoemission spectroscopy study of Fe(1.02)Te, the parent compound for iron chalcogenide superconductors. Deep in the antiferromagnetic state, the spectra exhibit a "peak-dip-hump" line shape associated with two clearly separate branches of dispersion, characteristics of polarons seen in manganites and lightly doped cuprates. As temperature increases towards the Néel temperature (T(N)), we observe a decreasing renormalization of the peak dispersion and a counterintuitive sharpening of the hump linewidth, suggestive of an intimate connection between the weakening electron-phonon (e-ph) coupling and antiferromagnetism. Our finding points to the highly correlated nature of the Fe(1.02)Te ground state featured by strong interactions among the charge, spin, and lattice and a good metallicity plausibly contributed by the coherent polaron motion.
spellingShingle Liu, Z
He, R
Lu, D
Yi, M
Chen, Y
Hashimoto, M
Moore, R
Mo, S
Nowadnick, E
Hu, J
Liu, T
Mao, Z
Devereaux, T
Hussain, Z
Shen, Z
Measurement of coherent polarons in the strongly coupled antiferromagnetically ordered iron-chalcogenide Fe1.02Te using angle-resolved photoemission spectroscopy.
title Measurement of coherent polarons in the strongly coupled antiferromagnetically ordered iron-chalcogenide Fe1.02Te using angle-resolved photoemission spectroscopy.
title_full Measurement of coherent polarons in the strongly coupled antiferromagnetically ordered iron-chalcogenide Fe1.02Te using angle-resolved photoemission spectroscopy.
title_fullStr Measurement of coherent polarons in the strongly coupled antiferromagnetically ordered iron-chalcogenide Fe1.02Te using angle-resolved photoemission spectroscopy.
title_full_unstemmed Measurement of coherent polarons in the strongly coupled antiferromagnetically ordered iron-chalcogenide Fe1.02Te using angle-resolved photoemission spectroscopy.
title_short Measurement of coherent polarons in the strongly coupled antiferromagnetically ordered iron-chalcogenide Fe1.02Te using angle-resolved photoemission spectroscopy.
title_sort measurement of coherent polarons in the strongly coupled antiferromagnetically ordered iron chalcogenide fe1 02te using angle resolved photoemission spectroscopy
work_keys_str_mv AT liuz measurementofcoherentpolaronsinthestronglycoupledantiferromagneticallyorderedironchalcogenidefe102teusingangleresolvedphotoemissionspectroscopy
AT her measurementofcoherentpolaronsinthestronglycoupledantiferromagneticallyorderedironchalcogenidefe102teusingangleresolvedphotoemissionspectroscopy
AT lud measurementofcoherentpolaronsinthestronglycoupledantiferromagneticallyorderedironchalcogenidefe102teusingangleresolvedphotoemissionspectroscopy
AT yim measurementofcoherentpolaronsinthestronglycoupledantiferromagneticallyorderedironchalcogenidefe102teusingangleresolvedphotoemissionspectroscopy
AT cheny measurementofcoherentpolaronsinthestronglycoupledantiferromagneticallyorderedironchalcogenidefe102teusingangleresolvedphotoemissionspectroscopy
AT hashimotom measurementofcoherentpolaronsinthestronglycoupledantiferromagneticallyorderedironchalcogenidefe102teusingangleresolvedphotoemissionspectroscopy
AT moorer measurementofcoherentpolaronsinthestronglycoupledantiferromagneticallyorderedironchalcogenidefe102teusingangleresolvedphotoemissionspectroscopy
AT mos measurementofcoherentpolaronsinthestronglycoupledantiferromagneticallyorderedironchalcogenidefe102teusingangleresolvedphotoemissionspectroscopy
AT nowadnicke measurementofcoherentpolaronsinthestronglycoupledantiferromagneticallyorderedironchalcogenidefe102teusingangleresolvedphotoemissionspectroscopy
AT huj measurementofcoherentpolaronsinthestronglycoupledantiferromagneticallyorderedironchalcogenidefe102teusingangleresolvedphotoemissionspectroscopy
AT liut measurementofcoherentpolaronsinthestronglycoupledantiferromagneticallyorderedironchalcogenidefe102teusingangleresolvedphotoemissionspectroscopy
AT maoz measurementofcoherentpolaronsinthestronglycoupledantiferromagneticallyorderedironchalcogenidefe102teusingangleresolvedphotoemissionspectroscopy
AT devereauxt measurementofcoherentpolaronsinthestronglycoupledantiferromagneticallyorderedironchalcogenidefe102teusingangleresolvedphotoemissionspectroscopy
AT hussainz measurementofcoherentpolaronsinthestronglycoupledantiferromagneticallyorderedironchalcogenidefe102teusingangleresolvedphotoemissionspectroscopy
AT shenz measurementofcoherentpolaronsinthestronglycoupledantiferromagneticallyorderedironchalcogenidefe102teusingangleresolvedphotoemissionspectroscopy