Matches in SemOpenAlex for { <https://semopenalex.org/work/W2396733410> ?p ?o ?g. }
- W2396733410 endingPage "5054" @default.
- W2396733410 startingPage "5048" @default.
- W2396733410 abstract "We have performed an extensive set of first-principles self-consistent-field (SCF) pseudopotential total-energy and force calculations for Si(001)-(2ifmmodetimeselsetexttimesfi{}2) and -(2ifmmodetimeselsetexttimesfi{}1) surfaces to arrive at an optimized model for the 2ifmmodetimeselsetexttimesfi{}1 surface. We started with the symmetric dimer model proposed by Abraham and Batra (AB) based on the Stillinger-Weber potential as well as the Yin-Cohen (YC) asymmetric dimer model to carry out the optimization procedure. We confirm the short dimer bond length obtained by YC, unlike in the AB model. However, a symmetric dimer model with a substantial (0.45 AA{}) inward relaxation of the top layer is found to be lower in energy than the AB model and is highly competitive with a slightly modified YC model. This supports the use of the symmetric model by Pandey in the construction of the extended defect model and also in the recent spin-unrestricted model calculations. From the 2ifmmodetimeselsetexttimesfi{}2 cell calculations we conclude that in the small-buckling limit, some energy gain is possible, provided that the dimers are tilted in opposite directions. We also establish that there is no barrier associated with the surface dimer formation but twisting of the dimers is energetically unfavorable. A detailed account of the Hellmann-Feynman forces is given for various structures." @default.
- W2396733410 created "2016-06-24" @default.
- W2396733410 creator A5050287613 @default.
- W2396733410 date "1990-03-15" @default.
- W2396733410 modified "2023-10-11" @default.
- W2396733410 title "Atomic structure of the Si(001)-(2×1) surface" @default.
- W2396733410 cites W1967083888 @default.
- W2396733410 cites W1968530028 @default.
- W2396733410 cites W1973237615 @default.
- W2396733410 cites W1974664861 @default.
- W2396733410 cites W1977230706 @default.
- W2396733410 cites W1977973449 @default.
- W2396733410 cites W1979515245 @default.
- W2396733410 cites W1979532370 @default.
- W2396733410 cites W1980538822 @default.
- W2396733410 cites W1981003329 @default.
- W2396733410 cites W1986483589 @default.
- W2396733410 cites W1992753351 @default.
- W2396733410 cites W1993847057 @default.
- W2396733410 cites W1995345518 @default.
- W2396733410 cites W1998427580 @default.
- W2396733410 cites W2006175459 @default.
- W2396733410 cites W2008597722 @default.
- W2396733410 cites W2010375817 @default.
- W2396733410 cites W2011035383 @default.
- W2396733410 cites W2017374384 @default.
- W2396733410 cites W2017994087 @default.
- W2396733410 cites W2020181630 @default.
- W2396733410 cites W2020983705 @default.
- W2396733410 cites W2021678748 @default.
- W2396733410 cites W2022511777 @default.
- W2396733410 cites W2023659673 @default.
- W2396733410 cites W2023737065 @default.
- W2396733410 cites W2026907619 @default.
- W2396733410 cites W2030140933 @default.
- W2396733410 cites W2034917090 @default.
- W2396733410 cites W2037782625 @default.
- W2396733410 cites W2037785958 @default.
- W2396733410 cites W2038984510 @default.
- W2396733410 cites W2041108035 @default.
- W2396733410 cites W2043709617 @default.
- W2396733410 cites W2049544639 @default.
- W2396733410 cites W2051256374 @default.
- W2396733410 cites W2052637367 @default.
- W2396733410 cites W2056645702 @default.
- W2396733410 cites W2058853966 @default.
- W2396733410 cites W2062256266 @default.
- W2396733410 cites W2062677926 @default.
- W2396733410 cites W2063772550 @default.
- W2396733410 cites W2064393765 @default.
- W2396733410 cites W2066038783 @default.
- W2396733410 cites W2066386433 @default.
- W2396733410 cites W2066906354 @default.
- W2396733410 cites W2069168160 @default.
- W2396733410 cites W2072780961 @default.
- W2396733410 cites W2074045165 @default.
- W2396733410 cites W2075061347 @default.
- W2396733410 cites W2083979929 @default.
- W2396733410 cites W2084473096 @default.
- W2396733410 cites W2086798543 @default.
- W2396733410 cites W2088228837 @default.
- W2396733410 cites W2088322887 @default.
- W2396733410 cites W2091795278 @default.
- W2396733410 cites W2096516455 @default.
- W2396733410 cites W4211023340 @default.
- W2396733410 cites W4233530657 @default.
- W2396733410 cites W4235101871 @default.
- W2396733410 doi "https://doi.org/10.1103/physrevb.41.5048" @default.
- W2396733410 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/9994361" @default.
- W2396733410 hasPublicationYear "1990" @default.
- W2396733410 type Work @default.
- W2396733410 sameAs 2396733410 @default.
- W2396733410 citedByCount "139" @default.
- W2396733410 countsByYear W23967334102012 @default.
- W2396733410 countsByYear W23967334102013 @default.
- W2396733410 countsByYear W23967334102014 @default.
- W2396733410 countsByYear W23967334102016 @default.
- W2396733410 countsByYear W23967334102017 @default.
- W2396733410 countsByYear W23967334102021 @default.
- W2396733410 crossrefType "journal-article" @default.
- W2396733410 hasAuthorship W2396733410A5050287613 @default.
- W2396733410 hasConcept C121332964 @default.
- W2396733410 hasConcept C132378524 @default.
- W2396733410 hasConcept C15744967 @default.
- W2396733410 hasConcept C184779094 @default.
- W2396733410 hasConcept C186370098 @default.
- W2396733410 hasConcept C2524010 @default.
- W2396733410 hasConcept C26873012 @default.
- W2396733410 hasConcept C2776029896 @default.
- W2396733410 hasConcept C2776799497 @default.
- W2396733410 hasConcept C2779546866 @default.
- W2396733410 hasConcept C33923547 @default.
- W2396733410 hasConcept C46141821 @default.
- W2396733410 hasConcept C62520636 @default.
- W2396733410 hasConcept C77805123 @default.
- W2396733410 hasConceptScore W2396733410C121332964 @default.
- W2396733410 hasConceptScore W2396733410C132378524 @default.
- W2396733410 hasConceptScore W2396733410C15744967 @default.