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Phantom collapse of electrically charged scalar field in dilaton gravity

机译:在Dilaton Gravity中的电荷标量领域的幻影坍塌

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Our research focus on gravitational collapse of electrically charged scalar field in dilaton gravity and in the presence of phantom coupling. We examine dynamical behaviour of the scalar field coupled to Maxwell field when gravitational interactions have form consistent with the low-energy limit of the string theory. Moreover, we allow the evolving fields to have negative sign in front of the respective kinetic term of the Lagrangian. The main aim of our studies is to investigate in what manner does the phantom nature of either Maxwell or dilaton fields (or both of them) affect the outcomes of the collapse. It turns out that the influence is crucial to the obtained spacetime structures. Negative kinetic energy of one (or both) of the fields delays, changes the course or even prevents the collapse.
机译:我们的研究重点是稀释型重力和幻象耦合存在的带电标量场的引力塌陷。当引力相互作用与字符串理论的低能量限制一致时,我们检查耦合到麦克斯韦领域的标量场的动态行为。此外,我们允许不断发展的字段在拉格朗日的相应动力学术语前面具有负符号。我们的研究的主要目的是以麦克斯韦尔或Dilaton字段(或两者)的幻象性质影响崩溃的结果的方式进行调查。事实证明,影响对于获得的时空结构是至关重要的。一个(或两者)的田间延迟的负动能,改变课程或甚至防止崩溃。

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