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首页> 外文期刊>General Relativity and Gravitation: GRG Journal >Universally coupled massive gravity, II: Densitized tetrad and cotetrad theories
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Universally coupled massive gravity, II: Densitized tetrad and cotetrad theories

机译:普遍耦合的大重力,II:致密的四分体和共四分体理论

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摘要

Einstein's equations in a tetrad formulation are derived from a linear theory in flat spacetime with an asymmetric potential using free field gauge invariance, local Lorentz invariance and universal coupling. The gravitational potential can be either covariant or contravariant and of almost any density weight. These results are adapted to produce universally coupled massive variants of Einstein's equations, yielding two one-parameter families of distinct theories with spin 2 and spin 0. The theories derived, upon fixing the local Lorentz gauge freedom, are seen to be a subset of those found by Ogievetsky and Polubarinov some time ago using a spin limitation principle. In view of the stability question for massive gravities, the proven non-necessity of positive energy for stability in applied mathematics in some contexts is recalled. Massive tetrad gravities permit the mass of the spin 0 to be heavier than that of the spin 2, as well as lighter than or equal to it, and so provide phenomenological flexibility that might be of astrophysical or cosmological use.
机译:四面体公式中的爱因斯坦方程式是使用自由场规范不变性,局部洛仑兹不变性和通用耦合从平面时空中具有不对称电位的线性理论导出的。重力势可以是协变的或反变的,并且几乎可以具有任何密度的重量。这些结果适用于产生爱因斯坦方程的普遍耦合的大规模变体,产生两个具有自旋2和自旋0的不同理论的单参数族。在固定局部洛伦兹规范自由度后得出的理论被视为这些理论的子集由Ogievetsky和Polubarinov在一段时间前使用自旋限制原理发现。鉴于大重力的稳定性问题,在某些情况下,人们回想起在应用数学中证明没有必要使用正能量来实现稳定性的问题。大量的四重引力使自旋0的质量比自旋2的质量重,并且比自旋2轻或相等,因此提供了可能在天体物理学或宇宙学用途上的现象学灵活性。

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