Noncommutative Quantum Gravity and Symmetry of Klein-Gordon Equation

Gangrok Lee
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Abstract

In the paper ’A New Approach to Quantum Gravity’[1], we suggest a new approach to quantum gravity. Using this theory, we can study the noncommutative gravitational field in momentum space. In this paper, we obtain the general form of the Klein-Gordon equation in noncommutative gravitational field. Then we find the symmetry associated with noncommutative gravity from the Klein-Gordon equation. We study black hole in momentum space and conclude that the event horizon of black holes is formed by the dipoles in momentum space with limit state.
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非交换量子引力与Klein-Gordon方程的对称性
在论文“A New Approach to Quantum Gravity”[1]中,我们提出了一种新的量子引力方法。利用这一理论,我们可以研究动量空间中的非对易重力场。本文得到了非对易引力场中Klein-Gordon方程的一般形式。然后我们从Klein-Gordon方程中找到与非对易引力相关的对称性。我们研究了动量空间中的黑洞,得出了黑洞的视界是由具有极限状态的动量空间中的偶极子形成的结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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