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Fermi-surface and electron correlation in A1 studied by Compton scattering

dc.contributor.authorSuortti, P
dc.contributor.authorBuslaps, T
dc.contributor.authorHonkimaki, V
dc.contributor.authorMetz, C
dc.contributor.authorShukla, A
dc.contributor.authorTschentscher, T
dc.contributor.authorKwiatkowska, J
dc.contributor.authorManiawski, F
dc.contributor.authorBansil, A
dc.contributor.authorKaprzyk, S
dc.contributor.authorKheifets, Anatoli
dc.contributor.authorLun, D R Alan
dc.contributor.authorSattler, T
dc.contributor.authorSchneider, J.R.
dc.contributor.authorBell, F
dc.date.accessioned2015-12-13T23:14:45Z
dc.date.issued2000
dc.date.updated2015-12-12T08:40:14Z
dc.description.abstractWe have studied the electron-momentum density distribution in Al using the coincidence as well as the conventional high-resolution Compton scattering technique. In order to interpret the results, corresponding band theory based computations of the electron momentum density (EMD) and the Compton profiles (CPs) have been carried out. Our focus here is on determining the size of the break ZF in the EMD at the Fermi momentum. For this purpose, differences between measurements and theoretical predictions are analyzed in terms of a simple model for describing electron correlation effects which are missing from the independent particle band theory framework; the model involves ZF as the only adjustable parameter. A good fit with the coincidence measurements is obtained for ZF of about 0.7, while the CP data yields ZF = 0.7 to 0.8. This study suggests that, in sharp contrast to the case of Li where recent high-resolution Compton work indicates ZF≈0, the standard picture of the interacting electron gas is substantially correct in Al.
dc.identifier.issn0022-3697
dc.identifier.urihttp://hdl.handle.net/1885/88767
dc.publisherPergamon-Elsevier Ltd
dc.sourceJournal of Physics and Chemistry of Solids
dc.subjectKeywords: Computational methods; Correlation methods; Electron gas; Fermi surface; Gamma rays; Mathematical models; Photons; Compton scattering; Electron momentum density; Aluminum
dc.titleFermi-surface and electron correlation in A1 studied by Compton scattering
dc.typeJournal article
local.bibliographicCitation.issue3
local.bibliographicCitation.lastpage401
local.bibliographicCitation.startpage397
local.contributor.affiliationSuortti, P, European Synchrotron Radiation Facility
local.contributor.affiliationBuslaps, T, European Synchrotron Radiation Facility
local.contributor.affiliationHonkimaki, V, University of Helsinki
local.contributor.affiliationMetz, C, European Synchrotron Radiation Facility
local.contributor.affiliationShukla, A, European Synchrotron Radiation Facility
local.contributor.affiliationTschentscher, T, Deutsches Elektronen-Synchrotron (DESY)
local.contributor.affiliationKwiatkowska, J, Institute of Nuclear Physics
local.contributor.affiliationManiawski, F, Institute of Nuclear Physics
local.contributor.affiliationBansil, A, Northeastern University
local.contributor.affiliationKaprzyk, S, Northeastern University
local.contributor.affiliationKheifets, Anatoli, College of Physical and Mathematical Sciences, ANU
local.contributor.affiliationLun, D R Alan, College of Physical and Mathematical Sciences, ANU
local.contributor.affiliationSattler, T, Deutsches Elektronen-Synchrotron (DESY)
local.contributor.affiliationSchneider, J.R., Deutsches Elektronen-Synchrotron (DESY)
local.contributor.affiliationBell, F, Ludwig Maximilian University of Munich
local.contributor.authoruidKheifets, Anatoli, u9701451
local.contributor.authoruidLun, D R Alan, u970057
local.description.embargo2037-12-31
local.description.notesImported from ARIES
local.description.refereedYes
local.identifier.absfor020204 - Plasma Physics; Fusion Plasmas; Electrical Discharges
local.identifier.ariespublicationMigratedxPub18603
local.identifier.citationvolume61
local.identifier.doi10.1016/S0022-3697(99)00324-8
local.identifier.scopusID2-s2.0-0033874778
local.type.statusPublished Version

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