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Discovery of New Isotopes ^{160}Os and ^{156}W: Revealing Enhanced Stability of the N=82 Shell Closure on the Neutron-Deficient Side.

H B Yang,Z G Gan, Y J Li,M L Liu,S Y Xu, C Liu,M M Zhang,Z Y Zhang, M H Huang,C X Yuan,S Y Wang,L Ma, J G Wang,X C Han,A Rohilla, S Q Zuo,X Xiao, X B Zhang,L Zhu, Z F Yue,Y L Tian,Y S Wang, C L Yang, Z Zhao,X Y Huang, Z C Li,L C Sun, J Y Wang, H R Yang,Z W Lu,W Q Yang,X H Zhou,W X Huang, N Wang,S G Zhou,Z Z Ren,H S Xu

Physical review letters(2024)

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摘要
Using the fusion-evaporation reaction ^{106}Cd(^{58}Ni,4n)^{160}Os and the gas-filled recoil separator SHANS, two new isotopes _{76}^{160}Os and _{74}^{156}W have been identified. The α decay of ^{160}Os, measured with an α-particle energy of 7080(26) keV and a half-life of 201_{-37}^{+58}  μs, is assigned to originate from the ground state. The daughter nucleus ^{156}W is a β^{+} emitter with a half-life of 291_{-61}^{+86}  ms. The newly measured α-decay data allow us to derive α-decay reduced widths (δ^{2}) for the N=84 isotones up to osmium (Z=76), which are found to decrease with increasing atomic number above Z=68. The reduction of δ^{2} is interpreted as evidence for the strengthening of the N=82 shell closure toward the proton drip line, supported by the increase of the neutron-shell gaps predicted in theoretical models.
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