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首页> 外文期刊>Physical review, D >Vacuum polarization of the quantized massive scalar field in the global monopole spacetime: The renormalized quantum stress energy tensor
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Vacuum polarization of the quantized massive scalar field in the global monopole spacetime: The renormalized quantum stress energy tensor

机译:全球单极空间中量化的大规模标量子域的真空偏振:重整化量子应力能量张量

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摘要

This paper is devoted to the construction of the renormalized quantum stress energy tensor 〈T_μ~ν〉_(ren) for a massive scalar field with arbitrary coupling to the gravitational field of a pointlike global monopole, using the Schwinger-DeWitt approximation, up to second order in the inverse mass μ of the field. The given stress energy tensor is constructed by functional differentiation with respect to the metric tensor of the one-loop effective action of a sufficiently massive scalar field, such that the Compton length of the quantum field is much less than the characteristic radius of the curvature of the background geometry. The results are obtained for a general curvature coupling parameter ξ and specified to the more physical cases of minimal and conformal coupling, showing that, in this specific case, the quantum massive scalar field in the global monopole spacetime violates all the pointwise energy conditions.
机译:本文致力于构建重字化量子应力能量张量 _(ren),用于大规模标量域,采用施韦格-dewitt近似,由施威尔-dewitt近似,达到顶部耦合 该字段逆质量μ的二阶。 给定的应力能量张量通过相对于足够大规模的标量场的单环有效作用的度量张量的功能分化来构造,使得量子场的康柏长度小于曲率的特征半径 背景几何。 将结果用于一般曲率耦合参数ξ并指定为更低的最小和保形耦合的物理情况,表明,在该特定情况下,全局单极空间中的量子大规模标量违反所有点的能量条件。

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