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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Analysis of scalar and fermion quantum field theory on anti-de Sitter spacetime
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Analysis of scalar and fermion quantum field theory on anti-de Sitter spacetime

机译:抗De Satter Spacetime的标量和FERMION量子场理论分析

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We study vacuum and thermal expectation values of quantum scalar and Dirac fermion fields on anti-de Sitter (adS) spacetime. AdS spacetime is maximally symmetric and this enables expressions for the scalar and fermion vacuum Feynman Green’s functions to be derived in closed form. We employ Hadamard renormalization to find the vacuum expectation values (v.e.v.s). The thermal Feynman Green’s functions are constructed from the vacuum Feynman Green’s functions using the imaginary time periodicity/anti-periodicity property for scalars/fermions. Focusing on massless fields with either conformal or minimal coupling to the spacetime curvature (these two cases being the same for fermions) we compute the differences between the thermal expectation values and v.e.v.s. We compare the resulting energy densities, pressures and pressure deviators with the corresponding classical quantities calculated using relativistic kinetic theory.
机译:我们研究了抗DE保姆(广告)时空上量子标量和DIRAC FERMION字段的真空和热预期值。 ADS Spacetime最大对称,这使得标量和FERMIOS VACUUM FEYNMAN GREEN的功能能够以封闭形式推导出来的表达式。 我们采用Hadamard Regormalization来找到真空期望值(V.E.V.S)。 热FEYNMAN GREEN的功能由VACUUM FEYNMAN GREEN的函数构成,用于针对SCALARS / FEMITON的虚数周期性/反周期性属性。 专注于与空间曲率的共形或最小耦合的无麻子场(这两种案例相同的费用米为)我们计算热预期值和V.E.V.S之间的差异。 我们将所产生的能量密度,压力和压力偏差与使用相对论的动力学理论计算的相应的经典量进行比较。

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