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Present status and future aspects of nuclear structure close to Sn-100 - The OSIRIS, NORDBALL-PEX and EUROBALL collaborations

Grawe, H ; Gorska, M ; Lipoglavsek, M ; Schubart, R ; Atac, A ; Axelsson, A ; Blomqvist, J ; Cederkäll, Joakim LU ; deAngelis, G and dePoli, M , et al. (1997) In Zeitschrift für Physik A Hadrons and Nuclei 358(2). p.185-190
Abstract
The present status of experimental approach to Sn-100 in the spectroscopy of excited states is landmarked by the T-z = 3/2 nuclei between (95)pd and In-101 and the T-z = 1 nuclei Pd-94 and Cd-98. The detection limits with Pre-EUROBALL gamma-arrays and ancillary detectors are below the 10(-5) level of the total fusion- evaporation residue cross section. A large scale shell model analysis of the existing data reveals the shell structure at Sn-100, which shows a remarkable similarity to Ni-56. Evidence for an increasing proton-neutron interaction in approaching the N = Z line is deduced from high spin isomers and spherical yrast lines. The effective E2 operator for protons and neutrons and implications for a low lying particle-hole (ph) E2... (More)
The present status of experimental approach to Sn-100 in the spectroscopy of excited states is landmarked by the T-z = 3/2 nuclei between (95)pd and In-101 and the T-z = 1 nuclei Pd-94 and Cd-98. The detection limits with Pre-EUROBALL gamma-arrays and ancillary detectors are below the 10(-5) level of the total fusion- evaporation residue cross section. A large scale shell model analysis of the existing data reveals the shell structure at Sn-100, which shows a remarkable similarity to Ni-56. Evidence for an increasing proton-neutron interaction in approaching the N = Z line is deduced from high spin isomers and spherical yrast lines. The effective E2 operator for protons and neutrons and implications for a low lying particle-hole (ph) E2 excitation in Sn-100 are discussed. (Less)
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publishing date
type
Contribution to journal
publication status
published
subject
in
Zeitschrift für Physik A Hadrons and Nuclei
volume
358
issue
2
pages
185 - 190
publisher
Springer
external identifiers
  • wos:A1997XQ41500020
ISSN
0939-7922
DOI
10.1007/s002180050302
language
English
LU publication?
no
id
7ba0e00c-e55b-466d-8ca0-ab490c44f009 (old id 4282712)
date added to LUP
2016-04-01 16:42:24
date last changed
2021-12-20 11:41:59
@article{7ba0e00c-e55b-466d-8ca0-ab490c44f009,
  abstract     = {{The present status of experimental approach to Sn-100 in the spectroscopy of excited states is landmarked by the T-z = 3/2 nuclei between (95)pd and In-101 and the T-z = 1 nuclei Pd-94 and Cd-98. The detection limits with Pre-EUROBALL gamma-arrays and ancillary detectors are below the 10(-5) level of the total fusion- evaporation residue cross section. A large scale shell model analysis of the existing data reveals the shell structure at Sn-100, which shows a remarkable similarity to Ni-56. Evidence for an increasing proton-neutron interaction in approaching the N = Z line is deduced from high spin isomers and spherical yrast lines. The effective E2 operator for protons and neutrons and implications for a low lying particle-hole (ph) E2 excitation in Sn-100 are discussed.}},
  author       = {{Grawe, H and Gorska, M and Lipoglavsek, M and Schubart, R and Atac, A and Axelsson, A and Blomqvist, J and Cederkäll, Joakim and deAngelis, G and dePoli, M and Fahlander, C and Johnson, A and Maier, KH and Norlin, LO and Nyberg, J and Foltescu, D and Palacz, M and Persson, J and Rejmund, M and Roth, HA and Shizuma, T and Skeppstedt, O and Sletten, G and Weiszflog, M}},
  issn         = {{0939-7922}},
  language     = {{eng}},
  number       = {{2}},
  pages        = {{185--190}},
  publisher    = {{Springer}},
  series       = {{Zeitschrift für Physik A Hadrons and Nuclei}},
  title        = {{Present status and future aspects of nuclear structure close to Sn-100 - The OSIRIS, NORDBALL-PEX and EUROBALL collaborations}},
  url          = {{http://dx.doi.org/10.1007/s002180050302}},
  doi          = {{10.1007/s002180050302}},
  volume       = {{358}},
  year         = {{1997}},
}