SUSYQM in nuclear structure: Bohr Hamiltonian with mass depending on the deformation

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SUSYQM in nuclear structure: Bohr Hamiltonian with mass depending on the deformation (EN)

Georgoudis, P. E.
Minkov, N.
Lenis, D.
Quesne, C.
Bonatsos, D.

info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion

2019-11-23


A well known problem of the Bohr Hamiltonian for the description of nuclear collective motion is that the nuclear moment of inertia increases with deformation too fast. We show that this can be avoided by allowing the nuclear mass to depend on the deformation. The resulting Hamiltonian is solved exactly, using techniques of Supersymmetric Quantum Mechanics (EN)


Annual Symposium of the Hellenic Nuclear Physics Society

English

Hellenic Nuclear Physics Society (HNPS) (EN)


2654-0088
2654-007X
Annual Symposium of the Hellenic Nuclear Physics Society; Τόμ. 18 (2010): HNPS2010; 69-74 (EL)
HNPS Advances in Nuclear Physics; Vol. 18 (2010): HNPS2010; 69-74 (EN)

Πνευματική ιδιοκτησία (c) 2019 D. Bonatsos, P. E. Georgoudis, D. Lenis, N. Minkov, C. Quesne (EL)




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