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Null and Timelike Geodesics near the Throats of Phantom Scalar Field Wormholes ?

机译:幻影标量野外虫洞附近的零点和时间般的测量仪?

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We study geodesic motion near the throats of asymptotically flat, static, spherically symmetric traversable wormholes supported by a self-gravitating minimally coupled phantom scalar field with an arbitrary self-interaction potential. We assume that any such wormhole possesses the reflection symmetry with respect to the throat, and consider only its observable “right half”. It turns out that the main features of bound orbits and photon trajectories close to the throats of such wormholes are very different from those near the horizons of black holes. We distinguish between wormholes of two types, the first and second ones, depending on whether the redshift metric function has a minimum or maximum at the throat. First, it turns out that orbits located near the centre of a wormhole of any type exhibit retrograde precession, that is, the angle of pericentre precession is negative. Second, in the case of high accretion activity, wormholes of the first type have the innermost stable circular orbit at the throat while those of the second type have the resting-state stable circular orbit in which test particles are at rest at all times. In our study, we have in mind the possibility that the strongly gravitating objects in the centres of galaxies are wormholes, which can be regarded as an alternative to black holes, and the scalar field can be regarded as a realistic model of dark matter surrounding galactic centres. In this connection, we discuss qualitatively some observational aspects of results obtained in this article.
机译:我们研究了由具有任意自相互作用潜力的自重最高耦合的虚线标量场支撑的渐近扁平,静态,球形对称的遍历潜在的蠕虫孔附近的测量运动。我们假设任何这样的虫洞都具有相对于喉部的反射对称性,并且仅考虑其可观察的“右半部分”。事实证明,靠近这种虫洞的喉部的束缚轨道和光子轨迹的主要特征与黑洞视野附近的那些非常不同。我们区分两种类型的蠕虫孔,第一和第二型,这取决于喉部的红星度量函数是否具有最小或最大值。首先,事实证明,位于任何类型的虫洞中心附近的轨道呈逆行进程,即Pericentre Precess的角度为负。其次,在高吸收活性的情况下,第一类的虫洞在喉咙处具有最内稳定的圆形轨道,而第二种类型的那些具有静止状态稳定的圆形轨道,其中测试颗粒始终处于静止状态。在我们的研究中,我们铭记了星系中心中的强烈倾向的物体是虫洞,可以被视为黑洞的替代,并且标量场可以被视为周围银河系的暗物质的现实模型中心。在这方面,我们讨论了本文中获得的结果的定性一些观察方面。

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