002708767 001__ 2708767
002708767 003__ SzGeCERN
002708767 005__ 20200207213642.0
002708767 0247_ $$2DOI$$9APS$$a10.1103/PhysRevC.101.014314$$qpublication
002708767 0248_ $$aoai:inspirehep.net:1777078$$pcerncds:CERN$$qINSPIRE:HEP$$qForCDS
002708767 035__ $$9http://inspirehep.net/oai2d$$aoai:inspirehep.net:1777078$$d2020-02-06T09:31:59Z$$h2020-02-07T05:01:26Z$$mmarcxml
002708767 035__ $$9Inspire$$a1777078
002708767 041__ $$aeng
002708767 100__ $$aCubiss, J [email protected]$$uYork U., England
002708767 245__ $$9APS$$aα -decay branching ratio of $^{180}\mathrm{ Pt}$
002708767 260__ $$c2020
002708767 300__ $$a4 p
002708767 520__ $$9APS$$aA study of the $^{180}\mathrm{Hg}$ decay chain performed at the CERN-ISOLDE facility has allowed the ground-state–to–ground-state α decay of $^{180}\mathrm{Pt}$ to be investigated. A more precise α-decay branching ratio of $b_{\alpha}$ $(^{180}\mathrm{Pt})=0.52(5)$% has been deduced. The reduced α-decay width calculated using the new value provides a more consistent picture of the systematics for $J^\pi=0^+\rightarrow 0^+$ ground-state–to–ground-state state α decays of neutron-deficient, even-even platinum isotopes.
002708767 65017 $$2SzGeCERN$$aNuclear Physics - Experiment
002708767 6531_ $$9publisher$$aNuclear Structure
002708767 690C_ $$aCERN
002708767 693__ $$aCERN LHC$$eATLAS
002708767 700__ $$aHarding, R D$$uCERN$$uYork U., England$$vCERN, CH-1211 Geneve 23 , Switzerland
002708767 700__ $$aAndreyev, A N$$vAdvanced Science Research Center (ASRC) , Japan Atomic Energy Agency (JAEA), Tokai-mura, Ibaraki 319-1195, Japan
002708767 700__ $$aAlthubiti, N$$vPhysics Department , Faculty of Science, Jouf University, Aljouf, Saudi Arabia
002708767 700__ $$aAndel, B$$vKU Leuven, Instituut voor Kern - en Stralingsfysica , B-3001 Leuven, Belgium
002708767 700__ $$aAntalic, S$$uComenius U.
002708767 700__ $$aBarzakh, A E$$uKurchatov Inst., Moscow
002708767 700__ $$aCocolios, T E$$uManchester U.$$uLeuven U.$$vSchool of Physics and Astronomy, The University of Manchester , Manchester M13 9PL, United Kingdom
002708767 700__ $$aDay Goodacre, T$$uManchester U.$$uCERN$$vCERN, CH-1211 Geneve 23 , Switzerland
002708767 700__ $$aFarooq-Smith, G J$$uManchester U.$$uLeuven U.$$vKU Leuven, Instituut voor Kern - en Stralingsfysica , B-3001 Leuven, Belgium
002708767 700__ $$aFedorov, D V$$uKurchatov Inst., Moscow
002708767 700__ $$aFedosseev, V N$$uCERN
002708767 700__ $$aGaffney, L P$$uLeuven U.$$uWest Scotland U.$$vKU Leuven, Instituut voor Kern - en Stralingsfysica , B-3001 Leuven, Belgium
002708767 700__ $$aGhys, L$$uSCK-CEN, Mol$$uLeuven U.$$vKU Leuven, Instituut voor Kern - en Stralingsfysica , B-3001 Leuven, Belgium
002708767 700__ $$aHuyse, M$$uLeuven U.
002708767 700__ $$aLynch, K M$$uCERN
002708767 700__ $$aMarsh, B A$$uCERN
002708767 700__ $$aPalenzuela, Y Martinez$$uLeuven U.
002708767 700__ $$aMolkanov, P L$$uKurchatov Inst., Moscow
002708767 700__ $$aRossel, R E$$uCERN$$uMainz U.$$vInstitut für Physik, Johannes Gutenberg-Universität , 55122 Mainz, Germany
002708767 700__ $$aRothe, S
002708767 700__ $$aSeliverstov, M D
002708767 700__ $$aSels, S
002708767 700__ $$aSpagnoletti, P
002708767 700__ $$aVan Beveren, C
002708767 700__ $$aVan Duppen, P
002708767 700__ $$aVeinhard, M
002708767 700__ $$aVerstraelen, E
002708767 700__ $$aZadvornaya, A
002708767 710__ $$gCMS
002708767 773__ $$c014314$$n1$$pPhys. Rev. C$$v101$$y2020
002708767 960__ $$a13
002708767 980__ $$aARTICLE
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