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Entropic dynamics: reconstructing quantum field theory in curved space-time

机译:熵动态:在弯曲时空中重建量子场理论

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The Entropic Dynamics reconstruction of quantum mechanics is extended to the quantum theory of scalar fields in curved space-time. The Entropic Dynamics framework, which derives quantum theory as an application of the method of maximum entropy, is combined with the covariant methods of Dirac, Hojman, Kuchar, and Teitelboim, which they used to develop a framework for classical covariant Hamiltonian theories. The goal is to formulate an information-based alternative to current approaches based on algebraic quantum field theory. One key ingredient is the adoption of a local notion of entropic time in which instants are defined on curved three-dimensional surfaces and time evolution consists of the accumulation of changes induced by local deformations of these surfaces. The resulting dynamics is a non-dissipative diffusion that is constrained by the requirements of foliation invariance and incorporates the necessary local quantum potentials. As applications of the formalism we derive the Ehrenfest for fields in curved-spacetime and briefly discuss the nature of divergences in quantum field theory.
机译:量子力学的熵动力学重建延伸到弯曲时空中标量场的量子理论。熵动力学框架来源于量子理论作为最大熵方法的应用,与Dirac,Hojman,Kuchar和Teitelboim的协调方法相结合,他们曾经为古典协助哈密顿理论制定框架。目标是基于代数量子场理论制定基于信息的替代方法。一个关键成分是采用熵时间的局部概念,其中速度在弯曲的三维表面和时间evolution包括这些表面的局部变形引起的变化的累积。所得到的动态是一种非耗散扩散,受到叶子不变性的要求,并包含必要的局部量子电位。作为形式主义的应用,我们在曲线时期的田间源于ehrenfest,并简要讨论了量子场理论的分歧性质。

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