Toroidal quadrupole transitions associated to collective rotational-vibrational motions of the nucleus

Physics – Nuclear Physics – Nuclear Theory

Scientific paper

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11 pages in LaTex, 3 figures available by fax or mail, accepted for publication in J.Phys.G

Scientific paper

10.1088/0954-3899/21/5/011

In the frame of the algebraic Riemann Rotational Model one computes the longitudinal, transverse and toroidal multipoles corresponding to the excitations of low-lying levels in the ground state band of several even-even nuclei by inelastic electron scattering (e,e'). Related to these transitions a new quantity, which accounts for the deviations from the Siegert theorem, is introduced. The intimate connection between the nuclear vorticity and the dynamic toroidal quadrupole moment is underlined. Inelastic differential cross-sections calculated at backscattering angles shows the dominancy of toroidal form-factors over a broad range of momentum transfer.

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