Investigation of low-energy spectrum in 250-260No chain

3 Jul 2024, 11:15
15m
Blokhintsev Hall (BLTP)

Blokhintsev Hall

BLTP

fourth floor, Chairman: Alexey Severyukhin

Speaker

Mariia Mardyban

Description

The low-energy multipole spectrum in isotopes 250-260No is investigated in the framework of fully self-consistent Quasiparticle-Random-Phase-Approximation (QRPA) method with Skyrme forces [1,2]. The representative set of Skyrme parametrizations (SLy5, SLy6, SkM* and SVbas) is applied. The main attention is paid to nuclei 252No and 254No, where we have most of the experimental spectroscopic information [3,4]. In addition to low-energy one-phonon collective states (lm=20,22,30,31,32) and their rotational band, the isomeric states are inspected. In general, a good agreement with the experimental data is obtained. It is shown that, a shell gap in the neutron single-particle spectra of 252No and 254No can lead to specific properties of these two nuclei. In connection with the first experimental evidence of the scissors mode in the 254No [5], the distribution of M1 strength in this nucleus is analyzed.
[1] P.-G. Reinhard, B. Schuetrumpf, and J. A. Maruhn, Comp. Phys. Commun. 258, 107603 (2021).
[2] A. Repko, J. Kvasil, V.O. Nesterenko and P.-G. Reinhard, arXiv:1510.01248[nucl-th].
[3] R.-D. Herzberg and P.T. Greenlees, Prog. Part. Nucl. Phys. 61, 674 (2008).
[4] R.-D. Herzberg, arXiv:2309.10468[nucl-ex].
[5] F.L. Bello Garrote et all, Phys. Lett. B834, 137479 (2022).

Section Nuclear structure: theory and experiment

Primary authors

Mariia Mardyban Valentin Nesterenko (BLTP, Joint Institute for Nuclear Research)

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