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2024年10月30日

Quantum Wormhole with Spinor Field

  • Using the Hawking-Page boundary condition, we discuss the quantum wormhole with spinor field. The corresponding Wheeler-De witt equation is derived, and the wave function of the wormhole calculated. After analysing the wormhole's wave function, we found that the probability density of the wormhole appearing at a=0 is zero, and the minimal radius of the wormhole is on the Planck scale.
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  • [1] B.S.Dewitt,Phys.Rev.,160(1967)1113.[2]J.B.Hartle and S.W.Hawking,Phys.Rev.,D28(1983)2960.[3]S.W.Hawking andD.N.Page,Preprint,NSF-ITP-90-76.[4]沈有根,丁浩刚,中国科学,A辑,(待发表)[5]S.W.Hawking,Mod.Phys Lett.,A5(1990)453.[6]S.W.Hawking and D.N.Page,Phys.Rev.,D42(1990)2655.[7]沈有根,天文学报,33(1992)146.[8]T.Christodoulakis and J.Zanelli,Phys.Rev.,D29(1984)2738.[9]A.Vilenkin,Phys.Rev.,D37(1988)888.[10]T.Christodoulakis and C.G.Papadopoulos,Phys.Rev.,D38(1988)1063.[11]M.Visser,Phys.Rev.,D43(1991)402.
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Get Citation
Wang Wenfu, Tao Caide and Shen Yougen. Quantum Wormhole with Spinor Field[J]. Chinese Physics C, 1994, 18(1): 52-57.
Wang Wenfu, Tao Caide and Shen Yougen. Quantum Wormhole with Spinor Field[J]. Chinese Physics C, 1994, 18(1): 52-57. shu
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Received: 1900-01-01
Revised: 1900-01-01
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Quantum Wormhole with Spinor Field

    Corresponding author: Wang Wenfu,
  • Department of Fundamental Science. Southwestern Petroleum Institute,Nanchong 6370012 Department of Physics, Sichuan Normal College, Nanchong 6370023 Shanghai Observatory, Academia Sinica, Shanghai 200030

Abstract: Using the Hawking-Page boundary condition, we discuss the quantum wormhole with spinor field. The corresponding Wheeler-De witt equation is derived, and the wave function of the wormhole calculated. After analysing the wormhole's wave function, we found that the probability density of the wormhole appearing at a=0 is zero, and the minimal radius of the wormhole is on the Planck scale.

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