Self-consistent calculations within the quasiparticle time blocking approximation with exact account taken of the single-particle continuum

A self-consistent version of the model based on the method of Green’s functions which takes into account conventional phonons of the random phase approximation, complex configurations like 2 quasiparticles⊗phonon ones, and exact single-particle continuum is used to describe many discrete natural-par...

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Veröffentlicht in:Bulletin of the Russian Academy of Sciences. Physics 2009-06, Vol.73 (6), p.792-795
Hauptverfasser: Avdeenkov, A. V., Grümmer, F., Kamerdzhiev, S. P., Krewald, S., Lyutorovich, N. A., Tselyaev, V. I., Speth, J.
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container_issue 6
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container_title Bulletin of the Russian Academy of Sciences. Physics
container_volume 73
creator Avdeenkov, A. V.
Grümmer, F.
Kamerdzhiev, S. P.
Krewald, S.
Lyutorovich, N. A.
Tselyaev, V. I.
Speth, J.
description A self-consistent version of the model based on the method of Green’s functions which takes into account conventional phonons of the random phase approximation, complex configurations like 2 quasiparticles⊗phonon ones, and exact single-particle continuum is used to describe many discrete natural-parity states and giant resonances in the 123 Sn and 208 Pb nuclei. The quasiparticle-phonon interaction is shown to be important not only for low-lying and high-lying collective states but also for low-lying noncollective states.
doi_str_mv 10.3103/S1062873809060203
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source SpringerNature Journals
subjects Approximation
Green's functions
Hadrons
Heavy Ions
Mathematical analysis
Nuclear Physics
Nuclei
Phonons
Physics
Physics and Astronomy
title Self-consistent calculations within the quasiparticle time blocking approximation with exact account taken of the single-particle continuum
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