Matches in SemOpenAlex for { <https://semopenalex.org/work/W2811295360> ?p ?o ?g. }
- W2811295360 abstract "Using a combination of scanning tunneling spectroscopy and atomic lateral manipulation, we obtained a systematic variation of the Kondo temperature ${T}_{mathrm{K}}$ of Co atoms on Ag(111) as a function of the surface-state contribution to the total density of states at the atom adsorption site ${ensuremath{rho}}_{s}$. By sampling the ${T}_{mathrm{K}}$ of a Co atom on positions where ${ensuremath{rho}}_{s}$ was spatially resolved beforehand, we obtain a nearly linear relationship between the magnitudes. We interpret the data on the basis of an Anderson model including orbital and spin degrees of freedom [SU(4)] in good agreement with the experimental findings. The fact that the onset of the surface band is near the Fermi level is crucial to finding the observed linear behavior. In light of this model, the quantitative analysis of the experimental data evidences that at least a quarter of the coupling of Co impurities with extended states takes place through the hybridization to surface states. This result is of fundamental relevance in the understanding of Kondo screening of magnetic impurities on noble-metal surfaces, where bulk and surface electronic states coexist." @default.
- W2811295360 created "2018-07-10" @default.
- W2811295360 creator A5033526056 @default.
- W2811295360 creator A5047536382 @default.
- W2811295360 creator A5047609766 @default.
- W2811295360 creator A5050332429 @default.
- W2811295360 creator A5051790249 @default.
- W2811295360 creator A5065468978 @default.
- W2811295360 date "2018-06-26" @default.
- W2811295360 modified "2023-10-12" @default.
- W2811295360 title "Quantifying the leading role of the surface state in the Kondo effect of Co/Ag(111)" @default.
- W2811295360 cites W1791015580 @default.
- W2811295360 cites W1963936151 @default.
- W2811295360 cites W1964872455 @default.
- W2811295360 cites W1965822544 @default.
- W2811295360 cites W1965923685 @default.
- W2811295360 cites W1977934701 @default.
- W2811295360 cites W1980696868 @default.
- W2811295360 cites W1981127340 @default.
- W2811295360 cites W1981797247 @default.
- W2811295360 cites W1982015288 @default.
- W2811295360 cites W1983915780 @default.
- W2811295360 cites W1987214934 @default.
- W2811295360 cites W1987832809 @default.
- W2811295360 cites W1991883699 @default.
- W2811295360 cites W1999161642 @default.
- W2811295360 cites W2002603227 @default.
- W2811295360 cites W2005006928 @default.
- W2811295360 cites W2015476985 @default.
- W2811295360 cites W2021993538 @default.
- W2811295360 cites W2023125103 @default.
- W2811295360 cites W2024101684 @default.
- W2811295360 cites W2024365094 @default.
- W2811295360 cites W2025511213 @default.
- W2811295360 cites W2036442910 @default.
- W2811295360 cites W2037781590 @default.
- W2811295360 cites W2046017826 @default.
- W2811295360 cites W2049792321 @default.
- W2811295360 cites W2055191227 @default.
- W2811295360 cites W2056770219 @default.
- W2811295360 cites W2069868544 @default.
- W2811295360 cites W2073675791 @default.
- W2811295360 cites W2077878228 @default.
- W2811295360 cites W2078989643 @default.
- W2811295360 cites W2079362216 @default.
- W2811295360 cites W2079495941 @default.
- W2811295360 cites W2088702036 @default.
- W2811295360 cites W2091941614 @default.
- W2811295360 cites W2128327001 @default.
- W2811295360 cites W2138291170 @default.
- W2811295360 cites W2143436665 @default.
- W2811295360 cites W2143695049 @default.
- W2811295360 cites W2148016544 @default.
- W2811295360 cites W2151592195 @default.
- W2811295360 cites W2163827178 @default.
- W2811295360 cites W2168371507 @default.
- W2811295360 cites W2266258109 @default.
- W2811295360 cites W2327039246 @default.
- W2811295360 cites W2511878028 @default.
- W2811295360 cites W2527267413 @default.
- W2811295360 cites W2556145761 @default.
- W2811295360 cites W2577652455 @default.
- W2811295360 cites W2625574024 @default.
- W2811295360 cites W2767735781 @default.
- W2811295360 cites W2773071429 @default.
- W2811295360 cites W2774321374 @default.
- W2811295360 cites W2782899782 @default.
- W2811295360 cites W2962954527 @default.
- W2811295360 cites W2963640706 @default.
- W2811295360 cites W3098063689 @default.
- W2811295360 cites W3100904091 @default.
- W2811295360 cites W3101209583 @default.
- W2811295360 cites W3102311609 @default.
- W2811295360 cites W2082720832 @default.
- W2811295360 doi "https://doi.org/10.1103/physrevb.97.235442" @default.
- W2811295360 hasPublicationYear "2018" @default.
- W2811295360 type Work @default.
- W2811295360 sameAs 2811295360 @default.
- W2811295360 citedByCount "14" @default.
- W2811295360 countsByYear W28112953602018 @default.
- W2811295360 countsByYear W28112953602019 @default.
- W2811295360 countsByYear W28112953602020 @default.
- W2811295360 countsByYear W28112953602021 @default.
- W2811295360 countsByYear W28112953602022 @default.
- W2811295360 countsByYear W28112953602023 @default.
- W2811295360 crossrefType "journal-article" @default.
- W2811295360 hasAuthorship W2811295360A5033526056 @default.
- W2811295360 hasAuthorship W2811295360A5047536382 @default.
- W2811295360 hasAuthorship W2811295360A5047609766 @default.
- W2811295360 hasAuthorship W2811295360A5050332429 @default.
- W2811295360 hasAuthorship W2811295360A5051790249 @default.
- W2811295360 hasAuthorship W2811295360A5065468978 @default.
- W2811295360 hasBestOaLocation W28112953602 @default.
- W2811295360 hasConcept C109281498 @default.
- W2811295360 hasConcept C121332964 @default.
- W2811295360 hasConcept C131584629 @default.
- W2811295360 hasConcept C147120987 @default.
- W2811295360 hasConcept C149635348 @default.
- W2811295360 hasConcept C184779094 @default.
- W2811295360 hasConcept C188234980 @default.