Nothing Special   »   [go: up one dir, main page]

CERN Accélérateur de science

002729324 001__ 2729324
002729324 003__ SzGeCERN
002729324 005__ 20200901222102.0
002729324 0247_ $$2DOI$$9Acta Physica Polonica B Editorial Office$$a10.5506/APhysPolB.50.297
002729324 0248_ $$aoai:inspirehep.net:1731638$$pcerncds:CERN$$qINSPIRE:HEP$$qForCDS
002729324 035__ $$9HAL$$ahal-02143911
002729324 035__ $$9http://old.inspirehep.net/oai2d$$aoai:inspirehep.net:1731638$$d2020-08-31T12:13:30Z$$h2020-09-01T04:00:06Z$$mmarcxml
002729324 035__ $$9Inspire$$a1731638
002729324 041__ $$aeng
002729324 100__ $$aJovančević, N$$uOrsay, IPN$$uU. Paris-Saclay$$vUniv. Paris-Saclay, 15 rue G. Clémenceau, 91406 Orsay Cedex, France
002729324 245__ $$9Acta Physica Polonica B Editorial Office$$aSpectroscopy of Neutron Induced Reactions with the $\nu $-ball Spectrometer
002729324 260__ $$bActa Physica Polonica B Editorial Office$$c2019
002729324 300__ $$a8 p
002729324 520__ $$aThe $\nu$-ball is a high-efficiency hybrid spectrometer which consists of both germanium (Ge) detectors and associated anti-Compton BGO shields, coupled to lanthanum bromide (LaBr$_3$) detectors. The hybrid configuration provides a combination of both excellent energy and timing resolutions. The $\nu$-ball geometry allows the coupling with the LICORNE directional neutron source at the ALTO facility of the IPN, Orsay. This opens the possibility to perform precise spectroscopy of neutron induced reactions and was used for two experiments during the recent experimental campaign. These two experiments are described here: 1. Spectroscopy of the neutron-rich fission fragments produced in the $^{238}$U($n, f$) and $^{232}$Th($n, f$) reactions; 2. Spectroscopy above the shape isomer in $^{238}$U. The $^{238}$U($n, f$) and $^{232}$Th($n, f$) reactions produce hundreds of neutron-rich nuclei on which gamma-ray spectroscopy can be performed. The main goal of the experiment aiming to populate the shape isomer in $^{238}$U is the measurement of the gamma-ray and fission decay branches as well as determination of level scheme in the super-deformed minimum. The shape isomer is populated by $^{238}$U($n, n'$) reaction, which gives a very advantageous population cross section over other reactions. More detailed descriptions of these two $\nu$-ball experiments will be presented here.
002729324 540__ $$3publication$$aCC-BY-4.0$$bActa Physica Polonica B Editorial Office$$uhttps://creativecommons.org/licenses/by-sa/4.0/
002729324 65017 $$2SzGeCERN$$aNuclear Physics - Experiment
002729324 690C_ $$aCERN
002729324 700__ $$aLebois, M$$uOrsay, IPN$$uU. Paris-Saclay$$vUniv. Paris-Saclay, 15 rue G. Clémenceau, 91406 Orsay Cedex, France
002729324 700__ $$aWilson, J N$$uOrsay, IPN$$uU. Paris-Saclay$$vUniv. Paris-Saclay, 15 rue G. Clémenceau, 91406 Orsay Cedex, France
002729324 700__ $$aThisse, D$$uOrsay, IPN$$uU. Paris-Saclay$$vUniv. Paris-Saclay, 15 rue G. Clémenceau, 91406 Orsay Cedex, France
002729324 700__ $$aQi, L$$uOrsay, IPN$$uU. Paris-Saclay$$vUniv. Paris-Saclay, 15 rue G. Clémenceau, 91406 Orsay Cedex, France
002729324 700__ $$aMatea, I$$uOrsay, IPN$$uU. Paris-Saclay$$vUniv. Paris-Saclay, 15 rue G. Clémenceau, 91406 Orsay Cedex, France
002729324 700__ $$aIbrahim, F$$uOrsay, IPN$$uU. Paris-Saclay$$vUniv. Paris-Saclay, 15 rue G. Clémenceau, 91406 Orsay Cedex, France
002729324 700__ $$aVerney, D$$uOrsay, IPN$$uU. Paris-Saclay$$vUniv. Paris-Saclay, 15 rue G. Clémenceau, 91406 Orsay Cedex, France
002729324 700__ $$aBabo, M$$uOrsay, IPN$$uU. Paris-Saclay$$vUniv. Paris-Saclay, 15 rue G. Clémenceau, 91406 Orsay Cedex, France
002729324 700__ $$aDelafosse, C$$uOrsay, IPN$$uU. Paris-Saclay$$vUniv. Paris-Saclay, 15 rue G. Clémenceau, 91406 Orsay Cedex, France
002729324 700__ $$aAdsley, F$$uOrsay, IPN$$uU. Paris-Saclay$$vUniv. Paris-Saclay, 15 rue G. Clémenceau, 91406 Orsay Cedex, France
002729324 700__ $$aTocabens, G$$uOrsay, IPN$$uU. Paris-Saclay$$vUniv. Paris-Saclay, 15 rue G. Clémenceau, 91406 Orsay Cedex, France
002729324 700__ $$aGottardo, A$$uOrsay, IPN$$uU. Paris-Saclay$$vUniv. Paris-Saclay, 15 rue G. Clémenceau, 91406 Orsay Cedex, France
002729324 700__ $$aPopovitch, Y$$uOrsay, IPN$$uU. Paris-Saclay$$vUniv. Paris-Saclay, 15 rue G. Clémenceau, 91406 Orsay Cedex, France
002729324 700__ $$aNemer, J$$uOrsay, IPN$$uU. Paris-Saclay$$vUniv. Paris-Saclay, 15 rue G. Clémenceau, 91406 Orsay Cedex, France
002729324 700__ $$aCanavan, R$$uSurrey U.$$uTeddington, Natl. Phys. Lab$$vNational Physical Laboratory, Teddington, Middlesex, TW11 0LW, UK
002729324 700__ $$aRudigier, M$$uSurrey U.$$uTeddington, Natl. Phys. Lab$$vNational Physical Laboratory, Teddington, Middlesex, TW11 0LW, UK
002729324 700__ $$aBelvedere, K$$uSurrey U.$$uTeddington, Natl. Phys. Lab$$vNational Physical Laboratory, Teddington, Middlesex, TW11 0LW, UK
002729324 700__ $$aBoso, A$$uSurrey U.$$uTeddington, Natl. Phys. Lab$$vNational Physical Laboratory, Teddington, Middlesex, TW11 0LW, UK
002729324 700__ $$aRegan, P$$uSurrey U.$$uTeddington, Natl. Phys. Lab$$vNational Physical Laboratory, Teddington, Middlesex, TW11 0LW, UK
002729324 700__ $$aPodolyak, Zs$$uSurrey U.$$uTeddington, Natl. Phys. Lab$$vNational Physical Laboratory, Teddington, Middlesex, TW11 0LW, UK
002729324 700__ $$aShearman, R$$uSurrey U.$$uTeddington, Natl. Phys. Lab$$vNational Physical Laboratory, Teddington, Middlesex, TW11 0LW, UK
002729324 700__ $$aBuncec, M$$uTeddington, Natl. Phys. Lab
002729324 700__ $$aInavov, P$$uSurrey U.$$uTeddington, Natl. Phys. Lab$$vNational Physical Laboratory, Teddington, Middlesex, TW11 0LW, UK
002729324 700__ $$aOberstedt, S$$uEuratom, Geel
002729324 700__ $$aLopez-Martens, A$$uCSNSM, Orsay
002729324 700__ $$aHauschild, K$$uCSNSM, Orsay
002729324 700__ $$aLjungvall, J$$uCSNSM, Orsay
002729324 700__ $$aChakma, R$$uCSNSM, Orsay
002729324 700__ $$aLozeva, R$$uCSNSM, Orsay
002729324 700__ $$aSöderström, P -A$$uBucharest, IFIN-HH
002729324 700__ $$aOberstedt, A$$uBucharest, IFIN-HH
002729324 700__ $$aEtasse, D$$uCaen U.
002729324 700__ $$aRalet, D$$uCaen U.
002729324 700__ $$aBlazhev, A$$uCologne U.
002729324 700__ $$aGerst, R -B$$uCologne U.
002729324 700__ $$aHafner, G$$uCologne U.
002729324 700__ $$aCieplicka-Oryńczak, N$$uCracow, INP
002729324 700__ $$aIskra, Ł W$$uCracow, INP
002729324 700__ $$aFornal, B$$uCracow, INP
002729324 700__ $$aBenzoni, G$$uMilan U.
002729324 700__ $$aLeoni, S$$uMilan U.
002729324 700__ $$aBottoni, S$$uMilan U.
002729324 700__ $$aHenrich, C$$uDarmstadt, Tech. Hochsch.
002729324 700__ $$aKoseoglou, P$$uDarmstadt, Tech. Hochsch.
002729324 700__ $$aWiederhold, J$$uDarmstadt, Tech. Hochsch.
002729324 700__ $$aHomm, I$$uDarmstadt, Tech. Hochsch.
002729324 700__ $$aSurder, C$$uDarmstadt, Tech. Hochsch.
002729324 700__ $$aKroll, T$$uDarmstadt, Tech. Hochsch.
002729324 700__ $$aKnezevic, D$$uBelgrade, Inst. Phys.
002729324 700__ $$aDragic, A$$uBelgrade, Inst. Phys.
002729324 700__ $$aCortes, L$$uWako, RIKEN
002729324 700__ $$aWarr, N$$uCologne U.
002729324 700__ $$aMiernik, K$$uWarsaw U.
002729324 700__ $$aAdamska, E$$uWarsaw U.
002729324 700__ $$aPiersa, M$$uWarsaw U.
002729324 700__ $$aRezynkina, K$$uLeuven U.
002729324 700__ $$aFraile, L$$uMadrid U.
002729324 700__ $$aGarcia, J  Benito$$uMadrid U.
002729324 700__ $$aSanchez, V$$uMadrid U.
002729324 700__ $$aAlgora, A$$uValencia U., IFIC
002729324 700__ $$aDavies, P$$uManchester U.
002729324 700__ $$aGuadilla-Gomez, V$$uSUBATECH, Nantes
002729324 700__ $$aFallot, M$$uSUBATECH, Nantes
002729324 700__ $$aKurtukian-Nieto, T$$uCENBG, Gradignan
002729324 700__ $$aSchmitt, C$$uCENBG, Gradignan
002729324 700__ $$aHeine, M$$uCENBG, Gradignan
002729324 700__ $$aTello, D  Reygadas$$uBrighton U.
002729324 700__ $$aYavachova, M$$uSofiya, Inst. Phys.
002729324 700__ $$aDiakaki, M$$uCERN
002729324 700__ $$aZeiser, F$$uOslo U.
002729324 700__ $$aPaulson, W$$uOslo U.
002729324 700__ $$aGestvang, D$$uOslo U.
002729324 773__ $$01731435$$c297$$n3$$pActa Phys. Pol. B$$v50$$wC18-08-26.2$$y2019
002729324 960__ $$a13
002729324 962__ $$b2729238$$k297$$nzakopane20180826
002729324 980__ $$aARTICLE
002729324 980__ $$aConferencePaper