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Dirac fermion, cosmological event horizons, and quantum entanglement

机译:DIRAC FERMION,宇宙事件视野和量子纠缠

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摘要

We discuss the field quantization of a free massive Dirac fermion in the two causally disconnected static patches of the de Sitter spacetime, by using mode functions that are normalizable on the cosmological event horizon. Using this, we compute the entanglement entropy of the vacuum state corresponding to these two regions, for a given fermionic mode. Further extensions of this result to more general static spherically symmetric and stationary axisymmetric spacetimes are discussed. For the stationary axisymmetric Kerr-de Sitter spacetime in particular, the variations of the entanglement entropy with respect to various eigenvalues and spacetime parameters are depicted numerically. We also comment on such variations when instead we consider the nonextremal black hole event horizon of the same spacetime.
机译:我们讨论了在De Satter Spacetime的两个因果型静态贴片中的自由巨大Dirac Fermion的现场量化,通过在宇宙学事件范围内归一化的模式功能。 使用此,对于给定的Fermionic模式,我们将对应于这两个区域对应的真空状态的缠结熵。 讨论了该结果的进一步扩展,以更长的静态球对称和静止轴对称刻度刻度。 特别地,对于静止轴对称ker-de Satter Spacetime,在数值上描绘了缠结熵相对于各种特征值和时空参数的变化。 我们还评论了此类变体,而我们考虑同一时期的非惊人的黑洞事件范围。

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