Spin and Quantization of Gravitational Space  

Spin and Quantization of Gravitational Space

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作  者:Bin Liang 

机构地区:[1]College of Mathematics and Physics, Chongqing University of Post and Telecommunication, Chongqing, China

出  处:《Journal of Modern Physics》2012年第11期1757-1762,共6页现代物理(英文)

摘  要:According to the formula of translational motion of vector along an infinitesimal closed curve in gravitational space, this article shows that the space and time both are quantized;the called center singularity of Schwarzschild metric does not exist physically, and Einstein’s theory of gravity is compatible with the traditional quantum theory in essence;the quantized gravitational space is just the spin network which consists of infinite quantized loops linking and intersecting each other, and that whether the particle is in spin eigenstate depends on the translational track of its spin vector in gravitational space.According to the formula of translational motion of vector along an infinitesimal closed curve in gravitational space, this article shows that the space and time both are quantized;the called center singularity of Schwarzschild metric does not exist physically, and Einstein’s theory of gravity is compatible with the traditional quantum theory in essence;the quantized gravitational space is just the spin network which consists of infinite quantized loops linking and intersecting each other, and that whether the particle is in spin eigenstate depends on the translational track of its spin vector in gravitational space.

关 键 词:QUANTIZATION of GRAVITATIONAL SPACE TRANSLATIONAL Motion of Vector Curvature Area Tensor SPIN Network SPIN EIGENSTATE 

分 类 号:O1[理学—数学]

 

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