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作 者:YOU YangMing ZHANG XueLong WANG BingZhang SHI HuiPing
机构地区:[1]Cangzhou Teacher's College, Cangzhou 061001, China [2]College of Medical Instrumentation, University of Shanghai for Science and Technology, Shanghai 200093, China
出 处:《Chinese Science Bulletin》2008年第3期460-464,共5页
基 金:the State Key Basic Research Project(973Project)of China(Grant No.2006CB605102);the National Natural Science Foundation of China(Grant No.90306016)
摘 要:In this paper,we discuss the mathematical relation determined by the basic physical constant between three types of quarks and the masses of leptons with charges in detail.First,by further theoretical analysis,we wonderfully see that the result got from the mass empirical formula of quark and charged lepton is identical with the data received by theoretical estimating from the gauge field theory.Second,we also gladly see that the result got from quark and lepton(with charges)mass empirical formula is completely accordant with experiment data.These mass formulas reveal the essential relation between me,mμ,mτ and mq.At the same time,the empirical formula may also derive the mass formula of neu-trinos.As to the mass of neutrinos,at present we only know the square difference of its mass,and so this is meaningful to theoretically estimating the mass.In this paper, we discuss the mathematical relation determined by the basic physical constant between three types of quarks and the masses of leptons with charges in detail. First, by further theoretical analysis, we wonderfully see that the result got from the mass empirical formula of quark and charged lepton is identical with the data received by theoretical estimating from the gauge field theory. Second, we also gladly see that the result got from quark and lepton (with charges) mass empirical formula is completely accordant with experiment data. These mass formulas reveal the essential relation between me, mμ, mτ and mq. At the same time, the empirical formula may also derive the mass formula of neutrinos. As to the mass of neutrinos, at present we only know the square difference of its mass, and so this is meaningful to theoretically estimating the mass.
分 类 号:O572.32[理学—粒子物理与原子核物理]
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