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首页> 外文期刊>Advances in high energy physics >Quantum Probes of Timelike Naked Singularities in 2+1-Dimensional Power-Law Spacetimes
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Quantum Probes of Timelike Naked Singularities in 2+1-Dimensional Power-Law Spacetimes

机译:2 + 1维幂律时空中类似时间的裸奇点的量子探针

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摘要

The formation of naked singularities in 2 + 1-dimensional power-law spacetimes in linear Einstein-Maxwell and Einstein-scalar theories sourced by azimuthally symmetric electric field and a self-interacting real scalar field, respectively, are considered in view of quantum mechanics. Quantum test fields obeying the Klein-Gordon and Dirac equations are used to probe the classical timelike naked singularities developed at r = 0. We show that when the classically singular spacetimes probed with scalar waves, the considered spacetimes remain singular. However, the spinorial wave probe of the singularity in the metric of a self-interacting real scalar field remains quantum regular. The notable outcome in this study is that the quantum regularity/singularity cannot be associated with the energy conditions.
机译:考虑到量子力学,分别考虑了由方位角对称电场和自相互作用实标量场产生的线性Einstein-Maxwell和Einstein标量理论在2 + 1维幂律时空中形成裸奇点。服从Klein-Gordon和Dirac方程的量子测试场用于探测在r = 0时发展的经典时空裸奇点。我们证明,当用标量波探测经典时空时,所考虑的时空保持奇异。但是,在自相互作用实标量场的度量中,奇异性的脊波探测器仍然是量子规则的。这项研究的显着结果是,量子规则性/奇异性不能与能量条件相关联。

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