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000402207 0247_ $$2datacite_doi$$a10.3204/DESY-PROC-2017-02/dias_alex
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000402207 1001_ $$0P:(DE-HGF)0$$aAlves, Alexandre$$b0
000402207 1112_ $$0C17-05-15.4$$2inspire$$a13th Patras Workshop on Axions, WIMPs and WISPs$$cThessaloniki$$d2017-05-15 - 2017-05-19$$gAXION-WIMP 2017$$wGreece
000402207 245__ $$aInferences on the Higgs Boson and Axion Masses  through a Maximum Entropy Principle
000402207 260__ $$aHamburg$$bVerlag Deutsches Elektronen-Synchrotron$$c2018
000402207 29510 $$aAlves, Alexandre "Inferences on the Higgs Boson and Axion Masses  through a Maximum Entropy Principle" in Proceedings of the 13th "Patras" Workshop on Axions, WIMPs and WISPs, PATRAS 2017 / Maroudas, Marios (eds.), Verlag Deutsches Elektronen-Synchrotron : 2018 ; Patras 2017 : 13th Patras Workshop on Axions, WIMPs and WISPs, 2017-05-15 - 2017-05-19, Thessaloniki
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000402207 520__ $$aThe Maximum Entropy Principle (MEP) is a method that can be used to infer the value of an unknown quantity in a set of probability functions. In this work we review two applications of MEP: one giving a precise inference of the Higgs boson mass value; and the other one allowing to infer the mass of the axion. In particular, for the axion we assume that it has a decay channel into pairs of neutrinos, in addition to the decay into two photons. The Shannon entropy associated to an initial ensemble of axions decaying into photons and neutrinos is then built for maximization.
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000402207 7001_ $$0P:(DE-HGF)0$$aDias, Alex G.$$b1
000402207 7001_ $$0P:(DE-HGF)0$$ada Silva, Roberto$$b2
000402207 7870_ $$0PUBDB-2018-01183$$aMaroudas, Marios$$dVerlag Deutsches Elektronen-Synchrotron$$iisPartOf$$rDESY-PROC-2017-02$$tProceedings of the 13th "Patras" Workshop on Axions, WIMPs and WISPs, PATRAS 2017
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