R
Ramon Wyss
Researcher at Royal Institute of Technology
Publications - 331
Citations - 7171
Ramon Wyss 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 42, co-authored 329 publications receiving 6614 citations. Previous affiliations of Ramon Wyss include Joint Institute for Nuclear Research & Niels Bohr Institute.
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A triplet of differently shaped spin-zero states in the atomic nucleus 186Pb
An Andreyev,Marc Huyse,P. Van Duppen,L. Weissman,D. Ackermann,J. Gerl,Fp Hessberger,Sigurd Hofmann,A. Kleinböhl,G. Münzenberg,S. Reshitko,Ch. Schlegel,H. Schaffner,P. Cagarda,M. Matos,S. Saro,A. Keenan,C. Moore,Cd O'leary,R. D. Page,Michael Taylor,Heikki Kettunen,Matti Leino,A. Lavrentiev,Ramon Wyss,Kristiaan Heyde +25 more
TL;DR: Here it is found experimentally that the lowest three states in the energy spectrum of the neutron deficient nucleus 186Pb are spherical, oblate and prolate, which is an apparently unique shape triplet.
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Universal decay law in charged-particle emission and exotic cluster radioactivity.
TL;DR: A linear universal decay formula is presented that is found to be a generalization of the Geiger-Nuttall law in alpha radioactivity and explains well all known cluster decays.
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Structure of superdeformed bands in the A ≈ 150 mass region
TL;DR: The structure of superdeformed rotational bands recently discovered around 152 Dy is discussed within the deformed shell model based on an average Woods-Saxon potential with a monopole pairing force.
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Highly deformed intruder bands in the A≈130 mass region
TL;DR: Deformed shell model calculations based on an average Woods-Saxon potential with a monopole pairing force included show for a number of nuclei close to A≈130 the appearance of rotational bands with a large deformation, s2≈0.4 as discussed by the authors.
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Microscopic mechanism of charged-particle radioactivity and generalization of the Geiger-Nuttall law
Chong Qi,Chong Qi,Furong Xu,Roberto Liotta,Ramon Wyss,Mingyi Zhang,Chayanit Asawatangtrakuldee,D. Hu +7 more
TL;DR: In this paper, a linear relation for charged-particle emissions is presented starting from the microscopic mechanism of the radioactive decay, which relates the logarithms of the decay half-lives with two variables, which depend upon the $Q$ values of the outgoing clusters as well as the masses and charges of the nuclei involved in the decay.