The general boundary formulation of quantum field theory is applied to a massive scalar field in two dimensional Rindler space. The field is quantized according to both the Schr\"odinger-Feynman quantization prescription and the holomorphic one in two different spacetime regions: a region bounded by two Cauchy surfaces and a region bounded by one timelike curve. An isomorphism is constructed between the Hilbert spaces associated with these two boundaries. This isomorphism preserves the probabilities that can be extracted from the free and the interacting quantum field theories, proving the equivalence of the S-matrices defined in the two settings, when both apply
The general boundary formulation of quantum theory is applied to quantize a real massive scalar fiel...
We study real linear scalar field theory on two simple non-globally hyperbolic spacetimes containing...
In this doctoral thesis, we develop and investigate new mathematical tools that are intended to allo...
The general boundary formulation of quantum field theory is applied to a massive scalar field in two...
We show that the real massive Klein-Gordon theory admits a description in terms of states on various...
We analyze quantum field theories on spacetimes M with timelike boundary from a model-independent pe...
We analyze quantum field theories on spacetimes M with timelike boundary from a model-independent pe...
We analyze quantum field theories on spacetimes M with timelike boundary from a model independent pe...
We present an analysis of the Unruh effect from the perspective of the general boundary formulation ...
We analyze quantum field theories on spacetimes M with timelike boundary from a model independent pe...
We analyze quantum field theories on spacetimes M with timelike boundary from a model independent pe...
This thesis has two main themes: on the one hand, in Chapters 3 and 5 we study some effects of the p...
We analyze quantum field theories on spacetimes M with timelike boundary from a model independent pe...
This thesis has two main themes: on the one hand, in Chapters 3 and 5 we study some effects of the p...
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...
We study real linear scalar field theory on two simple non-globally hyperbolic spacetimes containing...
In this doctoral thesis, we develop and investigate new mathematical tools that are intended to allo...
The general boundary formulation of quantum field theory is applied to a massive scalar field in two...
We show that the real massive Klein-Gordon theory admits a description in terms of states on various...
We analyze quantum field theories on spacetimes M with timelike boundary from a model-independent pe...
We analyze quantum field theories on spacetimes M with timelike boundary from a model-independent pe...
We analyze quantum field theories on spacetimes M with timelike boundary from a model independent pe...
We present an analysis of the Unruh effect from the perspective of the general boundary formulation ...
We analyze quantum field theories on spacetimes M with timelike boundary from a model independent pe...
We analyze quantum field theories on spacetimes M with timelike boundary from a model independent pe...
This thesis has two main themes: on the one hand, in Chapters 3 and 5 we study some effects of the p...
We analyze quantum field theories on spacetimes M with timelike boundary from a model independent pe...
This thesis has two main themes: on the one hand, in Chapters 3 and 5 we study some effects of the p...
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...
We study real linear scalar field theory on two simple non-globally hyperbolic spacetimes containing...
In this doctoral thesis, we develop and investigate new mathematical tools that are intended to allo...