Fermion Fields in Soliton Background of Six-dimensional Pure Kaiuza-Klein Theories

  • Dirac wave functions in the six-dimensional Abelian monopoie geometry exhibit a singularity around r = 0, which is in contrast to the five-dimensionai theory. Field equations for fermions in soliton background of a six-dimensional pure Kaluza-Klein theory are derived and illustrated by the spherically symmetric soliton case. Neutral fermion equations are decoupled into ordinary differential equations which agree with those obtained by the nulltetrad formalism in the Schwarzschild black-hole case.
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Zhang Guangyuan, Cai Weicheng and Li Xinzhou. Fermion Fields in Soliton Background of Six-dimensional Pure Kaiuza-Klein Theories[J]. Chinese Physics C, 1988, 12(S2): 159-164.
Zhang Guangyuan, Cai Weicheng and Li Xinzhou. Fermion Fields in Soliton Background of Six-dimensional Pure Kaiuza-Klein Theories[J]. Chinese Physics C, 1988, 12(S2): 159-164. shu
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Received: 1987-07-02
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    The project supported by National Natural Science Foundation of China

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Fermion Fields in Soliton Background of Six-dimensional Pure Kaiuza-Klein Theories

  • Fudan University, Shanghai
Fund Project:  The project supported by National Natural Science Foundation of China

Abstract: Dirac wave functions in the six-dimensional Abelian monopoie geometry exhibit a singularity around r = 0, which is in contrast to the five-dimensionai theory. Field equations for fermions in soliton background of a six-dimensional pure Kaluza-Klein theory are derived and illustrated by the spherically symmetric soliton case. Neutral fermion equations are decoupled into ordinary differential equations which agree with those obtained by the nulltetrad formalism in the Schwarzschild black-hole case.

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