most citedEvidence for Symplectic Symmetry in Ab Initio No-Core Shell Model Results for Light Nuclei

106 citations · 194 across the 5 of their papers we have counts for

collaborators

5 papers

nucl-th2007106 cited

Evidence for Symplectic Symmetry in Ab Initio No-Core Shell Model Results for Light Nuclei

Tomas Dytrych, Kristina D. Sviratcheva, Chairul Bahri +2

Clear evidence for symplectic symmetry in low-lying states of C and O is reported. Eigenstates of C and O, determined within the framework of the no-cor…

nucl-th200788 cited

Physical Significance of q Deformation and Many-Body Interactions in Nuclei

K. D. Sviratcheva, C. Bahri, A. I. Georgieva +1

The quantum deformation concept is applied to a study of pairing correlations in nuclei with mass 40<A<100. While the nondeformed limit of the theory provides a reasonable overall…

nucl-th2007

Symplectic Symmetry and the Ab Initio No-Core Shell Model

Jerry P. Draayer, Tomas Dytrych, Kristina D. Sviratcheva +2

The symplectic symmetry of eigenstates for the in O and the and lowest and configurations of C that are well-converged within the fr…

nucl-th2007

Light Nuclei in the Framework of the Symplectic No-core Shell Model

Jerry P. Draayer, Tomas Dytrych, Kristina D. Sviratcheva +2

A symplectic no-core shell model (Sp-NCSM) is constructed with the goal of extending the {\it ab-initio} NCSM to include strongly deformed higher-oscillator-shell configurations an…

nucl-th2003

On the physical significance of q-deformation to isovector pairing interactions in nuclei

K. D. Sviratcheva, C. Bahri, A. I. Georgieva +1

The quantum deformation concept is applied to a study of isovector pairing correlations in nuclei of the mass 40<A<100 region. While the non-deformed (q -> 1) limit of the theory p…