We give an interpretation of the temperature in de Sitter universe in terms of a dynamical Unruh effect associated with the Hubble sphere. As with the quantum noise perceived by a uniformly accelerated observer in static spacetimes, observers endowed with a proper motion can in principle detect the effect. In particular, we study a “Kodama observer” as a two-field Unruh detector for which we show the effect is approximately thermal. We also estimate the back-reaction of the emitted radiation and find trajectories associated with the Kodama vector field are stable
[[abstract]]In this paper we analyze the interaction of a uniformly accelerated detector with a quan...
It is predicted that an accelerating electron performs a Brownian motion in the inertial frame. This...
We aim to build a simple model of a gas with temperature (T) in thermal equilibrium with a black-bod...
We give an interpretation of the temperature in de Sitter universe in terms of a dynamical Unruh eff...
We give an interpretation of the temperature in de Sitter universe in terms of a dynamical Unruh eff...
A peculiar prediction of quantum field theory in curved spacetime is that the existence of particles...
We study the perception of the radiation phenomena of Hawking radiation and Unruh effect by using tw...
We show under what conditions an accelerated detector (e.g., an atom/ion/molecule) thermalizes while...
The Unruh effect is the phenomenon that accelerated observers detect particles even when inertial ob...
How long does a uniformly accelerated observer need to interact with a quantum field in order to rec...
The Unruh effect states that a uniformly linearly accelerated observer with proper acceleration a ex...
First order corrections to the Unruh effect are calculated from a model of an accelerated particle d...
We study the phenomenon of Unruh effect in a massless scalar field theory quantized on the light-fro...
If the vacuum is passive for uniformly accelerated observers in anti-de Sitter space-time (i.e. cann...
The Unruh effect is a quantum relativistic effect where the accelerated observer perceives the vacuu...
[[abstract]]In this paper we analyze the interaction of a uniformly accelerated detector with a quan...
It is predicted that an accelerating electron performs a Brownian motion in the inertial frame. This...
We aim to build a simple model of a gas with temperature (T) in thermal equilibrium with a black-bod...
We give an interpretation of the temperature in de Sitter universe in terms of a dynamical Unruh eff...
We give an interpretation of the temperature in de Sitter universe in terms of a dynamical Unruh eff...
A peculiar prediction of quantum field theory in curved spacetime is that the existence of particles...
We study the perception of the radiation phenomena of Hawking radiation and Unruh effect by using tw...
We show under what conditions an accelerated detector (e.g., an atom/ion/molecule) thermalizes while...
The Unruh effect is the phenomenon that accelerated observers detect particles even when inertial ob...
How long does a uniformly accelerated observer need to interact with a quantum field in order to rec...
The Unruh effect states that a uniformly linearly accelerated observer with proper acceleration a ex...
First order corrections to the Unruh effect are calculated from a model of an accelerated particle d...
We study the phenomenon of Unruh effect in a massless scalar field theory quantized on the light-fro...
If the vacuum is passive for uniformly accelerated observers in anti-de Sitter space-time (i.e. cann...
The Unruh effect is a quantum relativistic effect where the accelerated observer perceives the vacuu...
[[abstract]]In this paper we analyze the interaction of a uniformly accelerated detector with a quan...
It is predicted that an accelerating electron performs a Brownian motion in the inertial frame. This...
We aim to build a simple model of a gas with temperature (T) in thermal equilibrium with a black-bod...