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Wormhole geometries in fourth-order conformal Weyl gravity

机译:四阶共形魏尔引力中的虫洞几何

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摘要

We present an analysis of the classic wormhole geometries based on conformal Weyl gravity, rather than standard general relativity. The main characteristics of the resulting traversable wormholes remains the same as in the seminal study by Morris and Thorne, namely, that effective super-luminal motion is a viable consequence of the metric. Improving on previous work on the subject, we show that for particular choices of the shape and redshift functions the wormhole metric in the context of conformal gravity does not violate the main energy conditions at or near the wormhole throat. Some exotic matter might still be needed at the junction between our solutions and flat spacetime, but we demonstrate that the averaged null energy condition (as evaluated along radial null geodesics) is satisfied for a particular set of wormhole geometries. Therefore, if fourth-order conformal Weyl gravity is a correct extension of general relativity, traversable wormholes might become a realistic solution for interstellar travel.
机译:我们基于保形Weyl重力而不是标准的广义相对论,对经典的虫洞几何形状进行了分析。产生的可穿越虫洞的主要特征与Morris和Thorne进行的开创性研究相同,即有效的超腔运动是该度量的可行结果。通过对先前关于该主题的工作的改进,我们表明,对于形状和红移功能的特定选择,在共形引力的背景下,虫洞度量不违反虫洞喉咙处或附近的主要能量条件。在我们的解决方案和平坦时空之间的交界处可能仍需要一些奇异的物质,但是我们证明,对于特定的一组虫洞几何形状,平均零能条件(如沿径向零大地线进行评估)可以满足。因此,如果四阶共形Weyl引力是广义相对论的正确扩展,那么可穿越的虫洞可能成为星际旅行的现实解决方案。

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