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Gravitation and duality symmetry

机译:引力和对偶对称

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摘要

By generalizing the Hodge dual operator to the case of soldered bundles, and working in the context of the teleparallel equivalent of general relativity, an analysis of the duality symmetry in gravitation is performed. Although the basic conclusion is that, at least in the general-case, gravitation is not dual symmetric, there is a particular theory in which this symmetry shows up. It is a self dual (or anti-self dual) teleparallel gravity in which, due to the fact that it does not contribute to the interaction of fermions with gravitation, the purely tensor part of torsion is assumed to vanish. The ensuing fermionic gravitational interaction is found to be chiral. Since duality is intimately related to renormalizability, this theory may eventually be more amenable to renormalization than telepaxallel gravity or general relativity.
机译:通过将Hodge对偶算子推广到焊接束的情况,并在广义相对论的远心平行等效条件下工作,对引力的对偶对称进行了分析。尽管基本结论是,至少在一般情况下,引力不是双重对称的,但存在一种特定的理论,其中这种对称性得以显示。它是一种自对偶(或反自对偶)远平行重力,其中,由于它对费米子与引力的相互作用不起作用,因此假定扭转的纯张量部分消失了。发现随后的铁离子重力相互作用是手性的。由于对偶性与可重归化性密切相关,因此,该理论最终可能比tepaxallel重力或广义相对论更适合于重归一化。

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