We consider time-ordered (or Feynman) propagators between two different α-states of a linear de Sitter quantum field in the global de Sitter manifold and in the Poincaré patch. We separately examine α-β, in-in and in-out propagators and find the imaginary contribution to the effective actions. The in-in propagators are real in both the Poincaré patch and in the global de Sitter manifold. On the other side the in-out propagators at coincident points contain finite imaginary contributions in both patches in even dimensions, but they are not equivalent. In odd dimensions in both patches the imaginary contributions are zero. For completeness, we also consider the static patch and identify in our construction the state that is equivalent to the ...
The general boundary formulation of quantum theory is applied to quantize a real massive scalar fiel...
The Feynman propagator is at the heart of quantum field theory. However, in quantum field theory in ...
The Feynman propagator is at the heart of quantum field theory. However, in quantum field theory in ...
We consider time-ordered (or Feynman) propagators between two different α-states of a linear de Sitt...
We consider time-ordered (or Feynman) propagators between two different α-states of a linear de Sitt...
We consider time-ordered (or Feynman) propagators between two different α-states of a linear de Sitt...
In a spacetime with no global timelike Killing vector, we do not have a natural choice for the vacuu...
The general boundary formulation of quantum theory is applied to quantize a real massive scalar fiel...
AbstractThe general boundary formulation of quantum theory is applied to quantize a real massive sca...
We study the relation between two sets of correlators in interact-ing quantum field theory on de Sit...
We study the relation between two sets of correlators in interact-ing quantum field theory on de Sit...
We construct explicit mode expansions of various tree-level propagators in the Rindler-de Sitter uni...
We construct explicit mode expansions of various tree-level propagators in the Rindler-de Sitter uni...
We construct explicit mode expansions of various tree-level propagators in the Rindler-de Sitter uni...
The general boundary formulation of quantum theory is applied to quantize a real massive scalar fiel...
The general boundary formulation of quantum theory is applied to quantize a real massive scalar fiel...
The Feynman propagator is at the heart of quantum field theory. However, in quantum field theory in ...
The Feynman propagator is at the heart of quantum field theory. However, in quantum field theory in ...
We consider time-ordered (or Feynman) propagators between two different α-states of a linear de Sitt...
We consider time-ordered (or Feynman) propagators between two different α-states of a linear de Sitt...
We consider time-ordered (or Feynman) propagators between two different α-states of a linear de Sitt...
In a spacetime with no global timelike Killing vector, we do not have a natural choice for the vacuu...
The general boundary formulation of quantum theory is applied to quantize a real massive scalar fiel...
AbstractThe general boundary formulation of quantum theory is applied to quantize a real massive sca...
We study the relation between two sets of correlators in interact-ing quantum field theory on de Sit...
We study the relation between two sets of correlators in interact-ing quantum field theory on de Sit...
We construct explicit mode expansions of various tree-level propagators in the Rindler-de Sitter uni...
We construct explicit mode expansions of various tree-level propagators in the Rindler-de Sitter uni...
We construct explicit mode expansions of various tree-level propagators in the Rindler-de Sitter uni...
The general boundary formulation of quantum theory is applied to quantize a real massive scalar fiel...
The general boundary formulation of quantum theory is applied to quantize a real massive scalar fiel...
The Feynman propagator is at the heart of quantum field theory. However, in quantum field theory in ...
The Feynman propagator is at the heart of quantum field theory. However, in quantum field theory in ...