An SU(5) Grand Unified Model with Hadrons as Nontopological Solitons (Ⅱ)

  • The interactions of fermions with gauge fields in the SU(5) grand unified model presented in the preceding paper are discussed. The electroweak interactions obtained from the present model are consistent with the standard model, the gauge interactions inside a soliton are approximate to the known QCD. It is proven that only charge Q0 can be detected experimentally, and the interior charge Qi presented in the preceding paper cannot be detected. A possible explanation of the origin of fractional charge is presented. Only electroweak interactions of three generations of leptons are the same. Their interactions with unknown gauge fields are different. Before spontaneous symmetry breaking sinθw= 1/2.
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  • [1] 陈世浩,高能物理与核物理,18(1994),317.[2]戴元本,《相互作用的规范理论》,p398-409,p487-492,科学出版社,1987.[3]G.G.Ross,Grand Unified Theories,p183-186,p204-209,California(1984).
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Chen Shihao. An SU(5) Grand Unified Model with Hadrons as Nontopological Solitons (Ⅱ)[J]. Chinese Physics C, 1994, 18(5): 409-416.
Chen Shihao. An SU(5) Grand Unified Model with Hadrons as Nontopological Solitons (Ⅱ)[J]. Chinese Physics C, 1994, 18(5): 409-416. shu
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Received: 1900-01-01
Revised: 1900-01-01
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An SU(5) Grand Unified Model with Hadrons as Nontopological Solitons (Ⅱ)

    Corresponding author: Chen Shihao,
  • Department of Physics, Northeast Normal University, Changchun, 130024

Abstract: The interactions of fermions with gauge fields in the SU(5) grand unified model presented in the preceding paper are discussed. The electroweak interactions obtained from the present model are consistent with the standard model, the gauge interactions inside a soliton are approximate to the known QCD. It is proven that only charge Q0 can be detected experimentally, and the interior charge Qi presented in the preceding paper cannot be detected. A possible explanation of the origin of fractional charge is presented. Only electroweak interactions of three generations of leptons are the same. Their interactions with unknown gauge fields are different. Before spontaneous symmetry breaking sinθw= 1/2.

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