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Fierz–Pauli theory reloaded: from a theory of a symmetric tensor field to linearized massive gravity

机译:Fierz-Pauli理论重新加载:从一个对称张力场的理论线性化的大规模重力

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摘要

Modifying gravity at large distances by means of a massive graviton may explain the observed acceleration of the Universe without Dark Energy. The standard paradigm for Massive Gravity is the Fierz–Pauli theory, which, nonetheless, displays well known flaws in its massless limit. The most serious one is represented by the vDVZ discontinuity, which consists in a disagreement between the massless limit of the Fierz–Pauli theory and General Relativity. Our approach is based on a field-theoretical treatment of Massive Gravity: General Relativity, in the weak field approximation, is treated as a gauge theory of a symmetric rank-2 tensor field. This leads us to propose an alternative theory of linearized Massive Gravity, describing five degrees of freedom of the graviton, with a good massless limit, without vDVZ discontinuity, and depending on one mass parameter only, in agreement with the Fierz–Pauli theory.
机译:通过巨大的墓碑改变大距离的重力可以解释没有暗能的宇宙的观察到的加速度。 用于大规模重力的标准范式是Fierz-Pauli理论,仍然在无大量限制中显示出着名的缺陷。 最严重的是由VDVZ不连续代表,这包括在Fierz-Pauli理论和一般相对性的无大量限制之间的分歧。 我们的方法是基于巨大重力的现场理论处理:在弱场近似下,一般相对性被视为对称秩2张力场的仪表理论。 这导致我们提出了一种替代的线性化的巨大重力理论,描述了叫臂的五个自由度,具有良好的无阻力限制,没有VDVZ不连续性,并且根据仅与Fierz-Pauli理论一致的一个质量参数。

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