$f(T)$ gravity and energy distribution in Landau-Lifshitz prescription

M. Ganiou, M. Houndjo, J. Tossa
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引用次数: 9

Abstract

We investigate in this paper the Landau-Lifshitz energy distribution in the framework of $f(T)$ theory view as a modified version of Teleparallel theory. From some important Teleparallel theory results on the localization of energy, our investigations generalize the Landau-Lifshitz prescription from the computation of the energy-momentum complex to the framework of $f (T)$ gravity as it is done in the modified versions of General Relativity. We compute the energy density in the first step for three plane symmetric metrics in vacuum. We find for the second metric that the energy density vanishes independently of $f (T)$ models. These metrics provide results in perfect agreement with those mentioned in literature. In the second step the calculations are performed for the Cosmic String Spacetime metric. It results that the energy distribution depends on the mass $M$ of cosmic string and it is strongly affected by the parameter of the considered $f (T)$ quadratic model.
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$f(T)$ Landau-Lifshitz处方中的重力和能量分布
本文研究了f(T)$理论框架下的Landau-Lifshitz能量分布作为远平行理论的修正版本。从一些重要的远平行理论关于能量局域化的结果出发,我们的研究将朗道-利夫希茨公式从能量-动量复合的计算推广到f (T)$引力的框架,就像在广义相对论的修正版本中那样。第一步计算了真空中三个平面对称度规的能量密度。我们发现对于第二个度量,能量密度独立于f (T)模型而消失。这些指标提供的结果与文献中提到的结果完全一致。第二步是对宇宙弦时空度量进行计算。结果表明,能量分布取决于宇宙弦的质量$M$,并受所考虑的$f (T)$二次模型参数的强烈影响。
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