2004Physics Letters BOpen access

Identification of yrast high-K isomers in 177Lu and characterisation of 177mLu

G.D. Dracoulis, F.G. Kondev, G. J. Lane, A.P. Byrne, T. Kibédi, I. Ahmad, M. P. Carpenter, S. J. Freeman, R. V. F. Janssens, N. J. Hammond, T. Lauritsen, C. J. Lister, G. Mukherjee, D. Seweryniak, P. Chowdhury, S. K. Tandel, R. Gramer

Open full text 34 citations

Abstract

Long-lived high-K states have been identified in 177Lu, including an isomer with τ>10 μs, placed at 3530 keV and associated with the yrast Kπ=39/2−, 5-quasiparticle state predicted in multi-quasiparticle-state calculations. The γ-decay of the isomer exposes the rotational band based on the 160-day 23/2− isomer, 177mLu, with band properties which support its proposed configuration. A 90-ns isomer at 1325 keV is associated with the predicted 3-quasiparticle Kπ=25/2+ state while a 5-quasiparticle 33/2+, 902-ns isomer with highly-hindered decays is identified at 2771 keV. Both exhibit rotational bands whose properties are used to support the assigned configurations. The possibility that the Kπ=39/2− isomer found in this work should be identified with a β-decaying isomer, proposed recently to populate the 51-min 37/2− isomer in 177Hf, is discussed in terms of the implied logft values, configuration changes, and hindrances for K-forbidden γ-decays.

Open-access reader

About this research paper

What this paper is about

Long-lived high-K states have been identified in 177Lu, including an isomer with τ>10 μs, placed at 3530 keV and associated with the yrast Kπ=39/2−, 5-quasiparticle state predicted in multi-quasiparticle-state calculations. The γ-decay of the isomer exposes the rotational band based on the 160-day 23/2− isomer, 177mLu, with band properties which support its proposed configuration. A 90-ns isomer at 1325 keV is associated with the predicted 3-quasiparticle Kπ=25/2+ state while a 5-quasiparticle 33/2+, 902-ns isomer with highly-hindered decays is identified at 2771 keV. Both exhibit rotational bands whose properties are used to support the assigned configurations. The possibility that the Kπ=39/2− isomer found in this work should be identified with a β-decaying isomer, proposed recently to populate the 51-min 37/2− isomer in 177Hf, is discussed in terms of the implied logft values, configuration changes, and hindrances for K-forbidden γ-decays.

Why it matters

OpenAlex reports 34 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Long-lived high-K states have been identified in 177Lu, including an isomer with τ>10 μs, placed at 3530 keV and associated with the yrast Kπ=39/2−, 5-quasiparticle state predicted in multi-quasiparticle-state calculations. The γ-decay of the isomer exposes the rotational band based on the 160-day 23/2− isomer, 177mLu, with band properties which support its proposed configuration. A 90-ns isomer at 1325 keV is associated with the predicted 3-quasiparticle Kπ=25/2+ state while a 5-quasiparticle 33/2+, 902-ns isomer with highly-hindered decays is identified at 2771 keV. Both exhibit rotational bands whose properties are used to support the assigned configurations. The possibility that the Kπ=39/2− isomer found in this work should be identified with a β-decaying isomer, proposed recently to populate the 51-min 37/2− isomer in 177Hf, is discussed in terms of the implied logft values, configuration changes, and hindrances for K-forbidden γ-decays.

Key concepts: Yrast, Quasiparticle, Physics, State (computer science), Atomic physics, Excited state, Condensed matter physics, Computer science

Related papers

Back to paper searchBrowse research topicsOriginal source
Identification of yrast high-K isomers in 177Lu and characterisation of 177mLu — Research Paper | ScholarLens