Black Holes have Intrinsic Scalar Curvature

P. Morley
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Abstract

The scalar curvature [Formula: see text] is invariant under isometric symmetries (distance invariance) associated with metric spaces. Gravitational Riemannian manifolds are metric spaces. For Minkowski Space, the distance invariant is [Formula: see text], where [Formula: see text], [Formula: see text] are arbitrary 4-vectors. Thus the isometry symmetry associated with Minkowski Space is the Poincaré Group. The Standard Model Lagrangian density [Formula: see text] is also invariant under the Poincaré Group, so for Minkowski Space, the scalar curvature and the Standard Model Lagrangian density are proportional to each other. We show that this proportionality extends to general gravitational Riemannian manifolds, not just for Minkowski Space. This predicts that Black Holes have non-zero scalar curvatures [Formula: see text]. For Schwarzschild Black Holes, [Formula: see text] is predicted to be [Formula: see text], where [Formula: see text] is the Schwarzschild radius. The existence of [Formula: see text] means that Black Holes cannot evaporate.
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黑洞具有固有的标量曲率
标量曲率[公式:见文本]在与度量空间相关的等距对称(距离不变性)下是不变的。引力黎曼流形是度量空间。对于Minkowski空间,距离不变量为[公式:见文],其中[公式:见文],[公式:见文]为任意4向量。因此,与闵可夫斯基空间相关的等距对称是庞卡洛伊群。标准模型拉格朗日密度[公式:见文]在庞加莱格群下也是不变的,所以对于闵可夫斯基空间,标量曲率和标准模型拉格朗日密度是成比例的。我们证明了这种比例性延伸到一般的引力黎曼流形,而不仅仅是闵可夫斯基空间。这预示着黑洞具有非零的标量曲率[公式:见原文]。对于史瓦西黑洞,[公式:见文]被预测为[公式:见文],其中[公式:见文]是史瓦西半径。[公式:见原文]的存在意味着黑洞不会蒸发。
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来源期刊
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0.00%
发文量
18
审稿时长
3 weeks
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