C
Chong Qi
Researcher at Royal Institute of Technology
Publications - 138
Citations - 2064
Chong Qi is an academic researcher from Royal Institute of Technology. The author has contributed to research in topics: Neutron & Excited state. The author has an hindex of 22, co-authored 125 publications receiving 1627 citations. Previous affiliations of Chong Qi include Peking University & Nova Southeastern University.
Papers
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Spectroscopic factor and proton formation probability for the d3/2 proton emitter 151mLu
F. Wang,Bao-Hua Sun,Zhi Liu,Zhi Liu,Robert Page,Chong Qi,Catherine Scholey,S. F. Ashley,L. Bianco,I. J. Cullen,Iain Darby,Sarah Eeckhaudt,A. B. Garnsworthy,W. Gelletly,M. B. Gómez-Hornillos,Tuomas Grahn,Paul Greenlees,D. G. Jenkins,G. A. Jones,P. Jones,D. T. Joss,Rauno Julin,Sakari Juutinen,Steffen Ketelhut,S. Khan,A. Kishada,Matti Leino,Megumi Niikura,M. Nyman,Janne Pakarinen,S. Pietri,Zsolt Podolyak,Panu Rahkila,Susan Rigby,Jan Sarén,T. Shizuma,Juha Sorri,S. J. Steer,J. Thomson,N. J. Thompson,Juha Uusitalo,Philip M Walker,Steven Williams,Hong-Fei Zhang,W.Q. Zhang,L. H. Zhu +45 more
TL;DR: In this paper, the proton energy value and half-life of this isomer were remeasured to be 1295(5) keV and 15.4 0.8 s, respectively, in an experiment at the Accelerator Laboratory of the University of Jyvaskyla.
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Shell-model configuration-interaction description of quadrupole collectivity in Te isotopes
TL;DR: In this paper, the spectroscopy and transition properties of even-even Te isotopes were analyzed using the large-scale shell-model configuration interaction approach with a realist realist model.
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Analytic proof of partial conservation of seniority in $j=9/2$ shells
TL;DR: In this paper, an analytic proof for the partial conservation of the seniority quantum number in j = 9 / 2 shells has been derived as an extension of the work [L. Zamick, P. Van Isacker, Phys. Rev. C 78 (2008) 044327].
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Extended universal decay law formula for the α and cluster decays
Asim Soylu,Chong Qi +1 more
TL;DR: In this article, a modified Universal Decay Law (UDL) formula for the alpha and cluster decays is extended to include the effects of the angular momentum and isospin.
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Partial conservation of seniority and its unexpected influence on E2 transitions in g 9/2 nuclei
TL;DR: In this paper, the effects of configuration mixing from neighboring subshells on the structure of those unique states are analyzed, and it is shown that a sharp transition from pure seniority coupling to a significant mixture between the v = 2 and v = 4 states may be induced by the cross-orbital non-diagonal interaction matrix elements.