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Experimental study of isomeric intruder ½+ states 197,203At

Authors :
Auranen, Kalle
Uusitalo, Juha
Juutinen, Sakari
Badran, Hussam
Bisso, Federica Defranchi
Cox, Daniel
Grahn, Tuomas
Greenlees, Paul
Herzan, Andrej
Jakobsson, U.
Julin, Rauno
Konki, Joonas
Leino, Matti
Lightfoot, Alexandra
Mallaburn, M.
Neuvonen, Olavi
Pakarinen, Janne
Papadakis, Philippos
Partanen, Jari
Rahkila, Panu
Sandzelius, Mikael
Sarén, Jan
Scholey, Catherine
Sorri, Juha
Stolze, Sanna
Publication Year :
2017
Publisher :
American Physical Society, 2017.

Abstract

A newly observed isomeric intruder ½ + state [ T ½ = 3.5 ( 6 ) ms ] is identified in 203 At using a gas-filled recoil separator and fusion-evaporation reactions. The isomer is depopulated through a cascade of E 3 and mixed M 1 / E 2 transitions to the 9 / 2 − ground state, and it is suggested to originate from the π ( s ½ ) − 1 configuration. In addition, the structures above the ½ + state in 203 At and 197 At are studied using in-beam γ -ray spectroscopy, recoil-decay tagging, and recoil-isomer decay tagging methods. The ½ + state is fed from 3 / 2 + and 5 / 2 + states, and the origin of these states are discussed. peerReviewed

Subjects

Subjects :
astatiini
isomers
intruder states

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.od......1222..cf67afe8c0467c41150712dfebc64920