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dc.contributor.authorPonosov, Y. S.en
dc.contributor.authorStreltsov, S. V.en
dc.date.accessioned2021-08-31T15:02:16Z-
dc.date.available2021-08-31T15:02:16Z-
dc.date.issued2016-
dc.identifier.citationPonosov Y. S. Raman evidence for nonadiabatic effects in optical phonon self-energies of transition metals / Y. S. Ponosov, S. V. Streltsov. — DOI 10.1103/PhysRevB.94.214302 // Physical Review B. — 2016. — Vol. 94. — Iss. 21. — 214302.en
dc.identifier.issn24699950-
dc.identifier.otherFinal2
dc.identifier.otherAll Open Access, Green3
dc.identifier.otherhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85006504101&doi=10.1103%2fPhysRevB.94.214302&partnerID=40&md5=b8538a8f36016b374bc45afc6c640baa
dc.identifier.otherhttp://arxiv.org/pdf/1611.10006m
dc.identifier.urihttp://elar.urfu.ru/handle/10995/102174-
dc.description.abstractWe report a Raman study of the effect of temperature on the self-energies of optical phonons in a number of transition metals with hexagonal-close-packed structure. Anisotropic softening of phonon energies and narrowing of phonon linewidths with increasing temperature are observed. These effects are reproduced in the calculations of phonon spectral functions based on ab initio electronic structures and with carrier scattering by phonons taken into account. The combined observations and results of simulations indicate a relation between observed anomalies and the renormalization of the electron spectrum due to electron-phonon interaction. It is emphasized that the temperature dependence of the phonon energies resembles anharmonic behavior but is actually an electron-induced effect. © 2016 American Physical Society.en
dc.format.mimetypeapplication/pdfen
dc.language.isoenen
dc.publisherAmerican Physical Societyen
dc.rightsinfo:eu-repo/semantics/openAccessen
dc.sourcePhys. Rev. B2
dc.sourcePhysical Review Ben
dc.titleRaman evidence for nonadiabatic effects in optical phonon self-energies of transition metalsen
dc.typeArticleen
dc.typeinfo:eu-repo/semantics/articleen
dc.typeinfo:eu-repo/semantics/publishedVersionen
dc.identifier.doi10.1103/PhysRevB.94.214302-
dc.identifier.scopus85006504101-
local.contributor.employeePonosov, Y.S., M. N. Mikheev Institute of Metal Physics UB RAS, S. Kovalevskaya Str. 18, Ekaterinburg, 620990, Russian Federation, Ural Federal University, Mira Str. 19, Ekaterinburg, 620002, Russian Federation
local.contributor.employeeStreltsov, S.V., M. N. Mikheev Institute of Metal Physics UB RAS, S. Kovalevskaya Str. 18, Ekaterinburg, 620990, Russian Federation, Ural Federal University, Mira Str. 19, Ekaterinburg, 620002, Russian Federation
local.issue21-
local.volume94-
dc.identifier.wos000390247400003-
local.contributor.departmentM. N. Mikheev Institute of Metal Physics UB RAS, S. Kovalevskaya Str. 18, Ekaterinburg, 620990, Russian Federation
local.contributor.departmentUral Federal University, Mira Str. 19, Ekaterinburg, 620002, Russian Federation
local.identifier.puref47ef43c-1848-4e49-a36c-0f0d5d38f58euuid
local.identifier.pure1381160-
local.description.order214302-
local.identifier.eid2-s2.0-85006504101-
local.identifier.wosWOS:000390247400003-
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