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Non-Relativistic Limit of Embedding Gravity as General Relativity with Dark Matter

机译:与暗物质的一般相对性嵌入重力的非相对论极限

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Regge-Teitelboim embedding gravity is the modified gravity based on a simple string-inspired geometrical principle—our spacetime is considered here as a 4-dimensional surface in a flat bulk. This theory is similar to the recently popular theory of mimetic gravity—the modification of gravity appears in both theories as a result of the change of variables in the action of General Relativity. Embedding gravity, as well as mimetic gravity, can be used in explaining the dark matter mystery since, in both cases, the modified theory can be presented as General Relativity with additional fictitious matter (embedding matter or mimetic matter). For the general case, we obtain the equations of motion of embedding matter in terms of embedding function as a set of first-order dynamical equations and constraints consistent with them. Then, we construct a non-relativistic limit of these equations, in which the motion of embedding matter turns out to be slow enough so that it can play the role of cold dark matter. The non-relativistic embedding matter turns out to have a certain self-interaction, which could be useful in the context of solving the core-cusp problem that appears in the Λ -Cold Dark Matter ( Λ CDM) model.
机译:Regge-Teitelboim嵌入重力是基于简单的字符串启动的几何原理的改进的重力 - 我们的时空被认为是扁平散装中的4维表​​面。该理论类似于最近流行的模拟重力理论 - 由于在通用相对性的作用中变化的变化,因此在两个理论中出现重力的变化。嵌入重力以及模拟重力,可用于解释暗物质谜,因为在这两种情况下,改性理论可以与额外的虚构物质(嵌入物质或模仿物质)表示为一般相对性。对于常规情况,我们在嵌入函数中获得嵌入物质的运动方程,作为一组一定的动态方程和与它们一致的约束。然后,我们构建了这些方程的非相对论极限,其中嵌入物质的运动结果变得足够慢,以便它可以发挥冷暗物质的作用。非相对论的嵌入物质旨在具有一定的自相互作用,这在解决λ-cold暗物质(λCDM)模型中出现的核心-CUSP问题的背景下可以是有用的。

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