Matches in SemOpenAlex for { <https://semopenalex.org/work/W2007451423> ?p ?o ?g. }
- W2007451423 abstract "The best known method for growing epitaxial oxides on silicon requires the deposition of 1/2 monolayer of an alkaline earth metal, usually Sr, as the first step; however, the details of this process are not well understood. Using first-principles density functional theory calculations, we compute the total energies and vibrational free energies of several classes of Sr on Si(001) structures. These structures, in particular those with submonolayer Si reconstructions, allow us to explain the observed phase diagram of submonolayer Sr on Si(001). We analyze the electronic states of key structures using maximally localized Wannier functions and present simulated scanning tunneling microscopy images of key structures and find that they compare well with recent experiments. Our results clarify the role of temperature in epitaxial oxide growth on silicon, predict an experimentally verified low temperature path to epitaxy, and may be important in finding pathways to epitaxy between silicon and other oxides." @default.
- W2007451423 created "2016-06-24" @default.
- W2007451423 creator A5003543257 @default.
- W2007451423 creator A5014188575 @default.
- W2007451423 date "2009-08-11" @default.
- W2007451423 modified "2023-09-26" @default.
- W2007451423 title "Phase diagram of Sr on Si(001): A first-principles study" @default.
- W2007451423 cites W1602127108 @default.
- W2007451423 cites W1967490401 @default.
- W2007451423 cites W1969957136 @default.
- W2007451423 cites W1976008838 @default.
- W2007451423 cites W1977171682 @default.
- W2007451423 cites W1981368803 @default.
- W2007451423 cites W2003645630 @default.
- W2007451423 cites W2012773565 @default.
- W2007451423 cites W2021675898 @default.
- W2007451423 cites W2025388210 @default.
- W2007451423 cites W2026145981 @default.
- W2007451423 cites W2030976617 @default.
- W2007451423 cites W2034293321 @default.
- W2007451423 cites W2040306273 @default.
- W2007451423 cites W2045596260 @default.
- W2007451423 cites W2048703478 @default.
- W2007451423 cites W2053674573 @default.
- W2007451423 cites W2068847079 @default.
- W2007451423 cites W2068992211 @default.
- W2007451423 cites W2072451721 @default.
- W2007451423 cites W2075555616 @default.
- W2007451423 cites W2079183913 @default.
- W2007451423 cites W2083919021 @default.
- W2007451423 cites W2121624572 @default.
- W2007451423 cites W2122427541 @default.
- W2007451423 cites W2124914852 @default.
- W2007451423 cites W2230728100 @default.
- W2007451423 cites W2315843238 @default.
- W2007451423 cites W2474739281 @default.
- W2007451423 doi "https://doi.org/10.1103/physrevb.80.085306" @default.
- W2007451423 hasPublicationYear "2009" @default.
- W2007451423 type Work @default.
- W2007451423 sameAs 2007451423 @default.
- W2007451423 citedByCount "34" @default.
- W2007451423 countsByYear W20074514232012 @default.
- W2007451423 countsByYear W20074514232013 @default.
- W2007451423 countsByYear W20074514232014 @default.
- W2007451423 countsByYear W20074514232015 @default.
- W2007451423 countsByYear W20074514232016 @default.
- W2007451423 countsByYear W20074514232017 @default.
- W2007451423 countsByYear W20074514232018 @default.
- W2007451423 countsByYear W20074514232019 @default.
- W2007451423 countsByYear W20074514232022 @default.
- W2007451423 countsByYear W20074514232023 @default.
- W2007451423 crossrefType "journal-article" @default.
- W2007451423 hasAuthorship W2007451423A5003543257 @default.
- W2007451423 hasAuthorship W2007451423A5014188575 @default.
- W2007451423 hasConcept C110738630 @default.
- W2007451423 hasConcept C121332964 @default.
- W2007451423 hasConcept C14022793 @default.
- W2007451423 hasConcept C147597530 @default.
- W2007451423 hasConcept C152365726 @default.
- W2007451423 hasConcept C159467904 @default.
- W2007451423 hasConcept C171250308 @default.
- W2007451423 hasConcept C185592680 @default.
- W2007451423 hasConcept C191897082 @default.
- W2007451423 hasConcept C192562407 @default.
- W2007451423 hasConcept C26873012 @default.
- W2007451423 hasConcept C2779227376 @default.
- W2007451423 hasConcept C2779851234 @default.
- W2007451423 hasConcept C44280652 @default.
- W2007451423 hasConcept C49040817 @default.
- W2007451423 hasConcept C544956773 @default.
- W2007451423 hasConcept C62520636 @default.
- W2007451423 hasConcept C6518042 @default.
- W2007451423 hasConcept C7070889 @default.
- W2007451423 hasConcept C85906118 @default.
- W2007451423 hasConceptScore W2007451423C110738630 @default.
- W2007451423 hasConceptScore W2007451423C121332964 @default.
- W2007451423 hasConceptScore W2007451423C14022793 @default.
- W2007451423 hasConceptScore W2007451423C147597530 @default.
- W2007451423 hasConceptScore W2007451423C152365726 @default.
- W2007451423 hasConceptScore W2007451423C159467904 @default.
- W2007451423 hasConceptScore W2007451423C171250308 @default.
- W2007451423 hasConceptScore W2007451423C185592680 @default.
- W2007451423 hasConceptScore W2007451423C191897082 @default.
- W2007451423 hasConceptScore W2007451423C192562407 @default.
- W2007451423 hasConceptScore W2007451423C26873012 @default.
- W2007451423 hasConceptScore W2007451423C2779227376 @default.
- W2007451423 hasConceptScore W2007451423C2779851234 @default.
- W2007451423 hasConceptScore W2007451423C44280652 @default.
- W2007451423 hasConceptScore W2007451423C49040817 @default.
- W2007451423 hasConceptScore W2007451423C544956773 @default.
- W2007451423 hasConceptScore W2007451423C62520636 @default.
- W2007451423 hasConceptScore W2007451423C6518042 @default.
- W2007451423 hasConceptScore W2007451423C7070889 @default.
- W2007451423 hasConceptScore W2007451423C85906118 @default.
- W2007451423 hasIssue "8" @default.
- W2007451423 hasLocation W20074514231 @default.
- W2007451423 hasOpenAccess W2007451423 @default.
- W2007451423 hasPrimaryLocation W20074514231 @default.
- W2007451423 hasRelatedWork W1963570120 @default.
- W2007451423 hasRelatedWork W1973505842 @default.