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The black hole horizon as a dynamical system

机译:黑洞视界作为动力系统

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摘要

Interactions between outgoing Hawking particles and ingoing matter are determined by gravitational forces and Standard Model interactions. In particular, the gravitational interactions are responsible for the unitarity of the scattering against the horizon, as dictated by the holographic principle, but the Standard Model interactions also contribute, and understanding their effects is an important first step towards a complete understanding of the horizon's dynamics. The relation between in- and outgoing states is described in terms of an operator algebra. In this contribution, in which earlier results are rederived and elaborated upon, we first describe the algebra induced on the horizon by U(1) vector fields and scalar fields, including the case of an Englert-Brout-Higgs mechanism, and a more careful consideration of the transverse vector field components. We demonstrate that, unlike classical black holes, the quantized black hole has on its horizon an imprint of its (recent) past history, i.e., quantum hair. The relation between in- and outgoing states depends on this imprint. As a first step towards the inclusion of non-Abelian interactions, we then compute the effects of magnetic monopoles both in the in-states and in the out-states. They completely modify, and indeed simplify, our algebra.
机译:霍金粒子与进入物质之间的相互作用是由重力和标准模型相互作用决定的。尤其是,重力相互作用是全息原理所规定的散射相对于地平线的统一性的原因,但是标准模型相互作用也有贡献,并且了解它们的作用是全面了解地平线动力学的重要的第一步。 。输入和输出状态之间的关系是根据算子代数描述的。在此贡献中,重新研究和阐述了较早的结果,我们首先描述由U(1)矢量场和标量场在水平线上引入的代数,包括Englert-Brout-Higgs机制的情况,并且更加谨慎考虑横向矢量场分量。我们证明,与经典的黑洞不同,量化的黑洞在其地平线上具有(最近)过去历史的印记,即量子发。传入和传出状态之间的关系取决于此烙印。作为包含非阿贝尔相互作用的第一步,我们然后计算处于进入状态和处于退出状态的磁单极子的影响。它们完全修改并且确实简化了我们的代数。

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