Publication:

Ab initio study of electron energy loss spectra of bulk bismuth up to 100 eV

cris.lastimport.scopus

2024-08-07T13:00:58Z

cris.legacyId

227811

cris.virtual.orcid

0000-0002-6531-9966

cris.virtual.parent-organization

IMX

cris.virtual.parent-organization

STI

cris.virtual.parent-organization

EPFL

cris.virtual.sciperId

265334

cris.virtual.unitId

12411

cris.virtual.unitManager

Marzari, Nicola

cris.virtualsource.author-scopus

2c8e1302-febf-4ac2-8f26-7d4e0a48cc95

cris.virtualsource.department

2c8e1302-febf-4ac2-8f26-7d4e0a48cc95

cris.virtualsource.orcid

2c8e1302-febf-4ac2-8f26-7d4e0a48cc95

cris.virtualsource.parent-organization

03912670-e5f1-4f17-a57a-176ae283fb81

cris.virtualsource.parent-organization

03912670-e5f1-4f17-a57a-176ae283fb81

cris.virtualsource.parent-organization

03912670-e5f1-4f17-a57a-176ae283fb81

cris.virtualsource.parent-organization

03912670-e5f1-4f17-a57a-176ae283fb81

cris.virtualsource.rid

2c8e1302-febf-4ac2-8f26-7d4e0a48cc95

cris.virtualsource.sciperId

2c8e1302-febf-4ac2-8f26-7d4e0a48cc95

cris.virtualsource.unitId

03912670-e5f1-4f17-a57a-176ae283fb81

cris.virtualsource.unitManager

03912670-e5f1-4f17-a57a-176ae283fb81

datacite.rights

metadata-only

dc.contributor.author

Timrov, Iurii

dc.contributor.author

Markov, Maxime

dc.contributor.author

Gorni, Tommaso

dc.contributor.author

Raynaud, Michele

dc.contributor.author

Motornyi, Oleksandr

dc.contributor.author

Gebauer, Ralph

dc.contributor.author

Baroni, Stefano

dc.contributor.author

Vast, Nathalie

dc.date.accessioned

2017-05-01T17:04:40

dc.date.available

2017-05-01T17:04:40

dc.date.created

2017-05-01

dc.date.issued

2017

dc.date.modified

2025-01-30T12:57:24.756267Z

dc.description.abstract

The dynamical charge-density response of bulk bismuth has been studied within time-dependent density functional perturbation theory, explicitly accounting for spin-orbit coupling. The use of the Liouville-Lanczos approach allows us to calculate electron energy loss spectra for excitation energies as large as 100 eV. Effects of 5d semicore electronic states, spin-orbit coupling, exchange and correlation, local fields, and anisotropy are thoroughly investigated. The account of the 5d states in the calculation turns out to be crucial to correctly describe the loss spectra above 10 eV and, in particular, the position and shape of the bulk-plasmon peak at 14.0 eV at vanishing transferred momentum. Our calculations reveal the presence of interband transitions at 16.3 eV, which had never been discussed before. The origin of the peak at 5.8 eV is revisited as due to mixed interband and collective excitations. Finally, our study supplements the lack of experiments at finite transferred momenta.

dc.description.sponsorship

THEOS

dc.identifier.doi

10.1103/PhysRevB.95.094301

dc.identifier.isi

WOS:000395993900001

dc.identifier.uri

https://infoscience.epfl.ch/handle/20.500.14299/136905

dc.publisher

Amer Physical Soc

dc.publisher.place

College Pk

dc.relation.issn

2469-9950

dc.relation.journal

Physical Review B

dc.size

10

dc.title

Ab initio study of electron energy loss spectra of bulk bismuth up to 100 eV

dc.type

text::journal::journal article::research article

dspace.entity.type

Publication

dspace.legacy.oai-identifier

oai:infoscience.tind.io:227811

epfl.legacy.itemtype

Journal Articles

epfl.legacy.submissionform

ARTICLE

epfl.oai.currentset

OpenAIREv4

epfl.oai.currentset

STI

epfl.oai.currentset

article

epfl.peerreviewed

REVIEWED

epfl.publication.version

http://purl.org/coar/version/c_970fb48d4fbd8a85

epfl.writtenAt

EPFL

oaire.citation.articlenumber

094301

oaire.citation.issue

9

oaire.citation.volume

95

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