Matches in SemOpenAlex for { <https://semopenalex.org/work/W2004113418> ?p ?o ?g. }
- W2004113418 abstract "We report our successful implementation of the relativistic equation-of-motion coupled-cluster (EOMCC) method. This method is employed to compute the principal ionization potentials (IPs) of closed-shell rare-gas atoms, He-like ions, Be-like ions, along with Na${}^{+}$, Al${}^{+}$, K${}^{+}$, Be, and Mg. Four-component Dirac spinors are used in the calculations, and the one- and two-electron integrals are evaluated using the Dirac-Coulomb Hamiltonian. Our results are in excellent agreement with available measurements, which are taken from the National Institute of Science and Technology database. The accuracies of the calculations are estimated to be within one half of a percent for He-like and Be-like ions and 1% for the heavier systems. We also present results using the second-order many-body perturbation theory and random-phase approximation in the EOMCC framework. These results are compared with those of EOMCC at the level of single and double excitations in order to assess the role of the electron correlation effects in the intermediate schemes considered in our calculations." @default.
- W2004113418 created "2016-06-24" @default.
- W2004113418 creator A5005627118 @default.
- W2004113418 creator A5034598918 @default.
- W2004113418 creator A5066339314 @default.
- W2004113418 creator A5074134692 @default.
- W2004113418 creator A5080755369 @default.
- W2004113418 date "2014-04-22" @default.
- W2004113418 modified "2023-10-17" @default.
- W2004113418 title "Relativistic equation-of-motion coupled-cluster method: Application to closed-shell atomic systems" @default.
- W2004113418 cites W140394504 @default.
- W2004113418 cites W1491382181 @default.
- W2004113418 cites W1532239545 @default.
- W2004113418 cites W1975270191 @default.
- W2004113418 cites W1979344209 @default.
- W2004113418 cites W1980857195 @default.
- W2004113418 cites W1990583303 @default.
- W2004113418 cites W1993484621 @default.
- W2004113418 cites W1993873817 @default.
- W2004113418 cites W1995267752 @default.
- W2004113418 cites W1998402626 @default.
- W2004113418 cites W1998864438 @default.
- W2004113418 cites W1999782039 @default.
- W2004113418 cites W2004761211 @default.
- W2004113418 cites W2009596258 @default.
- W2004113418 cites W2012868161 @default.
- W2004113418 cites W2015275049 @default.
- W2004113418 cites W2015714539 @default.
- W2004113418 cites W2026812771 @default.
- W2004113418 cites W2027566787 @default.
- W2004113418 cites W2028438060 @default.
- W2004113418 cites W2028974637 @default.
- W2004113418 cites W2033305027 @default.
- W2004113418 cites W2036385524 @default.
- W2004113418 cites W2037503187 @default.
- W2004113418 cites W2042679934 @default.
- W2004113418 cites W2044040558 @default.
- W2004113418 cites W2046003541 @default.
- W2004113418 cites W2053967977 @default.
- W2004113418 cites W2057344726 @default.
- W2004113418 cites W2065379390 @default.
- W2004113418 cites W2066205090 @default.
- W2004113418 cites W2066481445 @default.
- W2004113418 cites W2069314769 @default.
- W2004113418 cites W2080670740 @default.
- W2004113418 cites W2084093334 @default.
- W2004113418 cites W2085488845 @default.
- W2004113418 cites W2086550782 @default.
- W2004113418 cites W2093169410 @default.
- W2004113418 cites W2097799178 @default.
- W2004113418 cites W2098614082 @default.
- W2004113418 cites W2133206212 @default.
- W2004113418 cites W2140467282 @default.
- W2004113418 cites W2141380102 @default.
- W2004113418 cites W2145962427 @default.
- W2004113418 cites W2325131227 @default.
- W2004113418 cites W3100695214 @default.
- W2004113418 doi "https://doi.org/10.1103/physreva.89.042510" @default.
- W2004113418 hasPublicationYear "2014" @default.
- W2004113418 type Work @default.
- W2004113418 sameAs 2004113418 @default.
- W2004113418 citedByCount "27" @default.
- W2004113418 countsByYear W20041134182014 @default.
- W2004113418 countsByYear W20041134182015 @default.
- W2004113418 countsByYear W20041134182016 @default.
- W2004113418 countsByYear W20041134182017 @default.
- W2004113418 countsByYear W20041134182018 @default.
- W2004113418 countsByYear W20041134182019 @default.
- W2004113418 countsByYear W20041134182020 @default.
- W2004113418 countsByYear W20041134182021 @default.
- W2004113418 countsByYear W20041134182022 @default.
- W2004113418 crossrefType "journal-article" @default.
- W2004113418 hasAuthorship W2004113418A5005627118 @default.
- W2004113418 hasAuthorship W2004113418A5034598918 @default.
- W2004113418 hasAuthorship W2004113418A5066339314 @default.
- W2004113418 hasAuthorship W2004113418A5074134692 @default.
- W2004113418 hasAuthorship W2004113418A5080755369 @default.
- W2004113418 hasBestOaLocation W20041134182 @default.
- W2004113418 hasConcept C121332964 @default.
- W2004113418 hasConcept C126255220 @default.
- W2004113418 hasConcept C130787639 @default.
- W2004113418 hasConcept C14037181 @default.
- W2004113418 hasConcept C145148216 @default.
- W2004113418 hasConcept C147120987 @default.
- W2004113418 hasConcept C164866538 @default.
- W2004113418 hasConcept C174256460 @default.
- W2004113418 hasConcept C184779094 @default.
- W2004113418 hasConcept C19637589 @default.
- W2004113418 hasConcept C198291218 @default.
- W2004113418 hasConcept C199360897 @default.
- W2004113418 hasConcept C32909587 @default.
- W2004113418 hasConcept C33923547 @default.
- W2004113418 hasConcept C35052450 @default.
- W2004113418 hasConcept C41008148 @default.
- W2004113418 hasConcept C43506125 @default.
- W2004113418 hasConcept C62520636 @default.
- W2004113418 hasConcept C81263218 @default.
- W2004113418 hasConcept C82601208 @default.
- W2004113418 hasConcept C9342510 @default.
- W2004113418 hasConceptScore W2004113418C121332964 @default.