ΔK=0 M1 Excitation Strength of the Well-Deformed Nucleus ^ 164 Dy from K Mixing.
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Abstract | :
The size of a ΔK=0 M1 excitation strength has been determined for the first time in a predominantly axially deformed even-even nucleus. It has been obtained from the observation of a rare K-mixing situation between two close-lying J^{π}=1^{+} states of the nucleus ^{164}Dy with components characterized by intrinsic projection quantum numbers K=0 and K=1. Nuclear resonance fluorescence induced by quasimonochromatic linearly polarized γ-ray beams provided evidence for K mixing of the 1^{+} states at 3159.1(3) and 3173.6(3) keV in excitation energy from their γ-decay branching ratios into the ground-state band. The ΔK=0 transition strength of B(M1;0_{1}^{+}→1_{K=0}^{+})=0.008(1)μ_{N}^{2} was inferred from a mixing analysis of their M1 transition rates into the ground-state band. It is in agreement with predictions from the quasiparticle phonon nuclear model. This determination represents first experimental information on the M1 excitation strength of a nuclear quantum state with a negative R-symmetry quantum number. |
Year of Publication | :
2020
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Journal | :
Physical review letters
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Volume | :
125
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Issue | :
9
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Number of Pages | :
092501
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Date Published | :
2020
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ISSN Number | :
0031-9007
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URL | :
https://link.aps.org/abstract/PRL/v125/p092501
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DOI | :
10.1103/PhysRevLett.125.092501
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Short Title | :
Phys Rev Lett
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