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- W87139240 abstract "This chapter describes the search for and the discovery of a new collective isovector magnetic dipole mode in heavy deformed nuclei that is experimentally known in 154,156,158,160Ga, 154Sm, 164Dy, 168Er, 174Yb, 238U, and 46,48Ti. The spectroscopic properties of this mode in the vibrational and rotational limit—such as excitation energy and strength—are described qualitatively in terms of standard collective models and the interacting boson model, in which the new low-lying isovector collective states are classified to be of mixed symmetry in the neutron–proton boson degree of freedom. Low-lying collective modes of nuclear excitations, that is, vibrations and rotations, have played a fundamental role in the development of the collective model of the nucleus for many years. This mode has been discovered in low-energy but high-resolution inelastic electron scattering at the Darmstadt electron linear accelerator, DALINAC. It leads in deformed even–even nuclei. The chapter also highlights the structure of the orbital M1-mode." @default.
- W87139240 created "2016-06-24" @default.
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- W87139240 date "1985-01-01" @default.
- W87139240 modified "2023-10-16" @default.
- W87139240 title "PROBING COLLECTIVE MODES WITH ELECTRON SCATTERING: THE CASE OF THE NEW MAGNETIC DIPOLE MODE IN HEAVY DEFORMED NUCLEI" @default.
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- W87139240 doi "https://doi.org/10.1016/b978-0-444-86979-1.50036-3" @default.
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