Journalartikel

DEFORMATION DEPENDENCE OF LOW-LYING M1 STRENGTHS IN EVEN ND ISOTOPES


AutorenlisteMARGRAF, J; HEIL, RD; KNEISSL, U; MAIER, U; PITZ, HH; FRIEDRICHS, H; LINDENSTRUTH, S; SCHLITT, B; WESSELBORG, C; VONBRENTANO, P; HERZBERG, RD; ZILGES, A

Jahr der Veröffentlichung1993

Seiten1474-1477

ZeitschriftPhysical Review C

Bandnummer47

Heftnummer4

ISSN2469-9985

eISSN2469-9993

DOI Linkhttps://doi.org/10.1103/PhysRevC.47.1474

VerlagAmerican Physical Society


Abstract
Measurements of the linear polarization of resonantly scattered photons have been used for model independent parity assignments in nuclear resonance fluorescence experiments (NRF). Previous NRF investigations of the even-even Nd isotopes were completed by polarization measurements on the transitional nucleus Nd-146. With these new parity assignments the systematics of low lying M1 strengths can be studied along the transition from spherical to deformed nuclear shapes. The total M1 strength in the excitation energy range of 2-4 MeV in the investigated even-even Nd isotopes increases proportionally to the square of the deformation parameter. These findings represent a reliable confirmation of the results recently reported for the Sm isotopes by the Darmstadt group. This deformation dependence can be explained by various recent theoretical approaches.



Zitierstile

Harvard-ZitierstilMARGRAF, J., HEIL, R., KNEISSL, U., MAIER, U., PITZ, H., FRIEDRICHS, H., et al. (1993) DEFORMATION DEPENDENCE OF LOW-LYING M1 STRENGTHS IN EVEN ND ISOTOPES, Physical Review C (nuclear physics), 47(4), pp. 1474-1477. https://doi.org/10.1103/PhysRevC.47.1474

APA-ZitierstilMARGRAF, J., HEIL, R., KNEISSL, U., MAIER, U., PITZ, H., FRIEDRICHS, H., LINDENSTRUTH, S., SCHLITT, B., WESSELBORG, C., VONBRENTANO, P., HERZBERG, R., & ZILGES, A. (1993). DEFORMATION DEPENDENCE OF LOW-LYING M1 STRENGTHS IN EVEN ND ISOTOPES. Physical Review C (nuclear physics). 47(4), 1474-1477. https://doi.org/10.1103/PhysRevC.47.1474



Schlagwörter


DEFORMED-NUCLEIEXCITATION MODEMAGNETIC DIPOLE STRENGTHND-142NUCLEAR-RESONANCE FLUORESCENCERARE-EARTH NUCLEI

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