Matches in SemOpenAlex for { <https://semopenalex.org/work/W2008601503> ?p ?o ?g. }
- W2008601503 endingPage "28" @default.
- W2008601503 startingPage "16" @default.
- W2008601503 abstract "The channel-dependent Argonne Av18 effective two-body interactions (CDEI) which are generated through the lowest order constrained variational (LOCV) calculation for asymmetric nuclear matter with the charge-dependent Av18 bare nucleon–nucleon potential are used to calculate the ground state properties of heavy closed shell nuclei such as 48Ca, 90Zr, 120Sn and 208Pb. The harmonic oscillator basis, and the local density approximation (LDA) are applied to create the relative and the center of mass dependent effective two-body potential. We get more binding with respect to the similar calculation with the Reid types potentials. It is tried to omit the LDA and perform full calculation with the Av18 CDEI for light nuclei. The results indicate that the LDA works quite well. It is also shown that in case of heavy closed shell nuclei and unlike our previous report with Reid68Day interaction, the contributions of higher partial waves (J>2) are very important for the calculations with Av18 potential and we get reasonable agreement between our calculated binding energies and RMS radii, with those predicated by the others methods, and the experimental data. Finally, the various aspects of channel and density dependent two-body effective interactions are discussed." @default.
- W2008601503 created "2016-06-24" @default.
- W2008601503 creator A5008830529 @default.
- W2008601503 creator A5025316686 @default.
- W2008601503 creator A5064645058 @default.
- W2008601503 date "2011-06-01" @default.
- W2008601503 modified "2023-10-01" @default.
- W2008601503 title "The effect of density dependent Av18 effective interaction on the ground state properties of heavy closed shell nuclei" @default.
- W2008601503 cites W1480663745 @default.
- W2008601503 cites W1526998169 @default.
- W2008601503 cites W1636332863 @default.
- W2008601503 cites W1756775360 @default.
- W2008601503 cites W1945973098 @default.
- W2008601503 cites W1966168690 @default.
- W2008601503 cites W1966781496 @default.
- W2008601503 cites W1967974620 @default.
- W2008601503 cites W1968278659 @default.
- W2008601503 cites W1968440992 @default.
- W2008601503 cites W1974813580 @default.
- W2008601503 cites W1975461206 @default.
- W2008601503 cites W1975942761 @default.
- W2008601503 cites W1977398631 @default.
- W2008601503 cites W1978924392 @default.
- W2008601503 cites W1981119123 @default.
- W2008601503 cites W1982898850 @default.
- W2008601503 cites W1987136849 @default.
- W2008601503 cites W1991212332 @default.
- W2008601503 cites W1995652115 @default.
- W2008601503 cites W2002402045 @default.
- W2008601503 cites W2005459592 @default.
- W2008601503 cites W2008586960 @default.
- W2008601503 cites W2009440364 @default.
- W2008601503 cites W2011597090 @default.
- W2008601503 cites W2013337650 @default.
- W2008601503 cites W2014419790 @default.
- W2008601503 cites W2014939986 @default.
- W2008601503 cites W2015720696 @default.
- W2008601503 cites W2019960037 @default.
- W2008601503 cites W2021006982 @default.
- W2008601503 cites W2022998377 @default.
- W2008601503 cites W2025387141 @default.
- W2008601503 cites W2030964246 @default.
- W2008601503 cites W2032415541 @default.
- W2008601503 cites W2038919420 @default.
- W2008601503 cites W2043499236 @default.
- W2008601503 cites W2047276824 @default.
- W2008601503 cites W2048576504 @default.
- W2008601503 cites W2049884304 @default.
- W2008601503 cites W2050773679 @default.
- W2008601503 cites W2056040671 @default.
- W2008601503 cites W2057275599 @default.
- W2008601503 cites W2057910081 @default.
- W2008601503 cites W2059399782 @default.
- W2008601503 cites W2061136215 @default.
- W2008601503 cites W2062319820 @default.
- W2008601503 cites W2062750979 @default.
- W2008601503 cites W2065471628 @default.
- W2008601503 cites W2067827561 @default.
- W2008601503 cites W2067920970 @default.
- W2008601503 cites W2069193162 @default.
- W2008601503 cites W2080388803 @default.
- W2008601503 cites W2082316492 @default.
- W2008601503 cites W2090853722 @default.
- W2008601503 cites W2094188491 @default.
- W2008601503 cites W2097475575 @default.
- W2008601503 cites W2104830965 @default.
- W2008601503 cites W2124319596 @default.
- W2008601503 cites W2126228479 @default.
- W2008601503 cites W2132665987 @default.
- W2008601503 cites W2186791408 @default.
- W2008601503 cites W2238129198 @default.
- W2008601503 cites W2256520907 @default.
- W2008601503 cites W2999660091 @default.
- W2008601503 cites W3202833589 @default.
- W2008601503 cites W4231597543 @default.
- W2008601503 cites W4242088851 @default.
- W2008601503 cites W4372163085 @default.
- W2008601503 cites W8603487 @default.
- W2008601503 doi "https://doi.org/10.1016/j.nuclphysa.2011.04.013" @default.
- W2008601503 hasPublicationYear "2011" @default.
- W2008601503 type Work @default.
- W2008601503 sameAs 2008601503 @default.
- W2008601503 citedByCount "13" @default.
- W2008601503 countsByYear W20086015032012 @default.
- W2008601503 countsByYear W20086015032013 @default.
- W2008601503 countsByYear W20086015032014 @default.
- W2008601503 countsByYear W20086015032015 @default.
- W2008601503 countsByYear W20086015032016 @default.
- W2008601503 countsByYear W20086015032018 @default.
- W2008601503 countsByYear W20086015032020 @default.
- W2008601503 countsByYear W20086015032023 @default.
- W2008601503 crossrefType "journal-article" @default.
- W2008601503 hasAuthorship W2008601503A5008830529 @default.
- W2008601503 hasAuthorship W2008601503A5025316686 @default.
- W2008601503 hasAuthorship W2008601503A5064645058 @default.
- W2008601503 hasConcept C113603373 @default.
- W2008601503 hasConcept C121332964 @default.
- W2008601503 hasConcept C12426560 @default.