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首页> 外文期刊>Physics Letters, B. Nuclear Physics and High Energy Physics >Non-perturbative spinning black holes in dynamical Chern-Simons gravity
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Non-perturbative spinning black holes in dynamical Chern-Simons gravity

机译:在动态Chern-Simons Gravity中的非扰动纺丝黑洞

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摘要

Spinning black holes in dynamical Einstein-Chern-Simons gravity are constructed by directly solving the field equations, without resorting to any perturbative expansion. This model is obtained by adding to the Einstein-Hilbert action a particular higher-curvature correction: the Pontryagin density, linearly coupled to a scalar field. The spinning black holes are stationary, axi-symmetric, asymptotically flat generalisations of the Kerr solution of Einstein's gravity, but they possess a non-trivial (odd-parity) scalar field. They are regular on and outside the horizon and satisfy a generalized Smarr relation. We discuss the deviations from Kerr at the level of the spin and mass distribution, the horizon angular velocity, the ergo-region and some basic properties of geodesic motion. For sufficiently small values of the Chern-Simons coupling our results match those previously obtained using a perturbative approach. (C) 2018 The Author(s). Published by Elsevier B.V.
机译:通过直接求解场方程,在不诉诸任何扰动扩张的情况下,通过直接解决动态爱因斯坦 - Chern-Simons重力的旋转黑洞。 该模型通过添加到Einstein-Hilbert作用的特定更高曲率校正:Pontryagin密度,线性地耦合到标量场。 旋转的黑洞是静止的,轴对称的,浅谈爱因斯坦重力的克尔解决方案的渐近平坦的概括,但它们具有非平凡(奇数)标量场。 它们是正常的地平线上外,并满足广义的Smarr关系。 我们讨论了旋转和质量分布的水平,地平线角速度,逆向区域和测地运动的一些基本性质的偏差。 对于Chern-Simons的足够小的值,耦合我们的结果与先前使用扰动方法获得的结果相匹配。 (c)2018年作者。 由elsevier b.v出版。

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