High-spin spectroscopy in $^{207}$At: Evidence of a 29/2$^{+}$ isomeric state

Khamosh Yadav,A. Y. Deo, Madhu, Dhananjaya Sahoo, Pradeep Srivastava,Saket Suman, S. K. Tandel,A. Sharma, I. Ahmed, K. Katre,K. Rojeeta Devi,Sunil Dutt,Santosh Kumar, Yashraj,S. Muralithar,R. P. Singh

arXiv (Cornell University)(2022)

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摘要
Yrast and near-yrast states above the known 25/2$^{+}$ isomer in $^{207}$At are established for the first time. The level scheme is extended up to 47/2$\hbar$ and 6.5 MeV with the addition of about 60 new $\gamma$-ray transitions. The half-life of the 25/2$^{+}$ isomer is revisited and a value of $T_{1/2}$ = 107.5(9) ns is deduced. Evidence of a hitherto unobserved 29/2$^{+}$ isomer in $^{207}$At is presented. A systematic study of $B(E3)$ values for the transitions de-exciting the 29/2$^{+}$ isomer in the neighboring odd-$A$ At isotopes suggests a half-life in the 2$-$4.5 $\mu$s range for this state in $^{207}$At. The experimental results are compared with large-scale shell-model calculations performed using the KHM3Y effective interaction in the $Z$ = 50$-$126, $N$ = 82$-$184 model space and an overall good agreement is noted between the theory and the experiment. A qualitative comparison of the excited states and the isomers with analogous states in neighboring nuclei provides further insight into the structure of $^{207}$At.
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spectroscopy,high-spin
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