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作 者:Bin Liang
机构地区:[1]College of Science, Chongqing University of Posts and Telecommunication, Chongqing, China
出 处:《Journal of Modern Physics》2018年第2期202-206,共5页现代物理(英文)
摘 要:This article proves that the number of gluons is conserved in strong interaction and non-conserved in weak interaction by extending the idea that the quark is composed of gluons to other particles. It explains why the parity is non-conserved in weak interaction, why the fermions could be divided into the three generations, why the antiparticle of neutrino is itself and why the neutrino oscillation exists.This article proves that the number of gluons is conserved in strong interaction and non-conserved in weak interaction by extending the idea that the quark is composed of gluons to other particles. It explains why the parity is non-conserved in weak interaction, why the fermions could be divided into the three generations, why the antiparticle of neutrino is itself and why the neutrino oscillation exists.
关 键 词:QUARK GLUON Strong and Weak Interaction PARITY NEUTRINO and Its OSCILLATION
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