In a recent paper, general solutions for the vacuum wave functionals in the Schrodinger picture were given for a variety of classes of curved spacetimes. Here, we describe a number of simple examples which illustrate how the presence of spacetime boundaries influences the vacuum wave functional and how physical quantities are independent of the choice of spacetime foliation used in the Schrodinger approach despite the foliation dependence of the wave functional
To make sense of quantum field theory in an arbitrary (globally hyperbolic) curved spacetime, the th...
To make sense of quantum field theory in an arbitrary (globally hyperbolic) curved spacetime, the th...
To make sense of quantum field theory in an arbitrary (globally hyperbolic) curved spacetime, the th...
In a recent paper, general solutions for the vacuum wave functionals in the Schrodinger picture were...
The Schrodinger picture description of vacuum states in curved spacetime is further developed. Gener...
This thesis has two main themes: on the one hand, in Chapters 3 and 5 we study some effects of the p...
(Joint work with Ch. Gerard) In QFT on curved spacetimes, a central difficulty is how to reconcil...
Restricted Access. An open access version is available at arXiv.org.Kuchar showed that the quantum d...
(Joint work with Ch. Gerard) In QFT on curved spacetimes, a central difficulty is how to reconcil...
A boundary undergoing relativistic motion can create particles from quantum vacuum fluctuations in a...
AbstractThe energy–momentum tensor for a massless conformally coupled scalar field in the region bet...
We reconsider the Casimir effect for the massless conformal scalar field in a ''half Einstein univer...
The possibility of the creation of curved spacetimes or spacetimes with a nontrivial topological str...
In this work, we derive the boundary Schrödinger (functional) equation for the wave function of a qu...
The canonical quantum theory of a free field using arbitrary foliations of a flat two-dimensional sp...
To make sense of quantum field theory in an arbitrary (globally hyperbolic) curved spacetime, the th...
To make sense of quantum field theory in an arbitrary (globally hyperbolic) curved spacetime, the th...
To make sense of quantum field theory in an arbitrary (globally hyperbolic) curved spacetime, the th...
In a recent paper, general solutions for the vacuum wave functionals in the Schrodinger picture were...
The Schrodinger picture description of vacuum states in curved spacetime is further developed. Gener...
This thesis has two main themes: on the one hand, in Chapters 3 and 5 we study some effects of the p...
(Joint work with Ch. Gerard) In QFT on curved spacetimes, a central difficulty is how to reconcil...
Restricted Access. An open access version is available at arXiv.org.Kuchar showed that the quantum d...
(Joint work with Ch. Gerard) In QFT on curved spacetimes, a central difficulty is how to reconcil...
A boundary undergoing relativistic motion can create particles from quantum vacuum fluctuations in a...
AbstractThe energy–momentum tensor for a massless conformally coupled scalar field in the region bet...
We reconsider the Casimir effect for the massless conformal scalar field in a ''half Einstein univer...
The possibility of the creation of curved spacetimes or spacetimes with a nontrivial topological str...
In this work, we derive the boundary Schrödinger (functional) equation for the wave function of a qu...
The canonical quantum theory of a free field using arbitrary foliations of a flat two-dimensional sp...
To make sense of quantum field theory in an arbitrary (globally hyperbolic) curved spacetime, the th...
To make sense of quantum field theory in an arbitrary (globally hyperbolic) curved spacetime, the th...
To make sense of quantum field theory in an arbitrary (globally hyperbolic) curved spacetime, the th...