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首页> 外文期刊>Annales Henri Poincare >Adiabatic Vacuum States on General Spacetime Manifolds: Definition, Construction, and Physical Properties
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Adiabatic Vacuum States on General Spacetime Manifolds: Definition, Construction, and Physical Properties

机译:一般时空流形上的绝热真空状态:定义,构造和物理性质

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摘要

Adiabatic vacuum states are a well-known class of physical states for linear quantum fields on Robertson-Walker spacetimes. We extend the definition of adiabatic vacua to general spacetime manifolds by using the notion of the Sobolev wave-front set. This definition is also applicable to interacting field theories. Hadamard states form a special subclass of the adiabatic vacua. We analyze physical properties of adiabatic vacuum representations of the Klein-Gordon field on globally hyperbolic spacetime manifolds (factoriality, quasiequivalence, local definiteness, Haag duality) and construct them explicitly, if the manifold has a compact Cauchy surface.
机译:绝热真空状态是Robertson-Walker时空上线性量子场的一类著名的物理状态。通过使用Sobolev波前集合的概念,我们将绝热真空的定义扩展到了一般的时空流形。该定义也适用于相互作用的场论。哈达玛州是绝热真空的特殊子类。我们分析了整体双曲时空流形上的Klein-Gordon场的绝热真空表示的物理性质(阶乘,拟等价性,局部定性,Haag对偶性),如果流形具有紧凑的柯西表面,则应明确构造它们。

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