Tools Share Abstract When ground-state atoms are accelerated and the field with which they interact is in its normal vacuum state, the atoms detect Unruh radiation. We show that atoms falling into a black hole emit acceleration radiation which, under appropriate initial conditions (Boulware vacuum), has an energy spectrum which looks much like Hawking radiation. This analysis also provides insight into the Einstein principle of equivalence between acceleration and gravity. The Unruh temperature can also be obtained by using the Kubo–Martin–Schwinger (KMS) periodicity of the two-point thermal correlation function, for a system undergoing uniform acceleration; as with much of the material in this paper, this known result is obtained with a tw...
We analyse the effect of velocity and acceleration on the temperature felt by particles and strings ...
In analyzing the nature of thermal radiance experienced by an accelerated observer (Unruh effect), a...
AbstractWe present a novel mechanism for the present acceleration of the universe. We find that the ...
AbstractWe present a novel mechanism for the present acceleration of the universe. We find that the ...
This paper explains the origin of the Unruh Temperature, in terms of disagreements, on the number of...
Acceleration radiation—or Unruh radiation—the thermal radiation observed by an ever accelerating obs...
We study the perception of the radiation phenomena of Hawking radiation and Unruh effect by using tw...
In analyzing the nature of thermal radiance experienced by an accelerated observer (Unruh effect), a...
We study the quantum effects of a test Klein-Gordon field in a Vaidya space-time consisting of a col...
The Unruh effect states that a uniformly linearly accelerated observer with proper acceleration a ex...
The quantum mechanical evolution of an accelerated extended detector coupled to a massless scalar fi...
An important question in the derivation of the acceleration radiation, which also arises in Hawking'...
We study the quantum effects of a test Klein-Gordon field in a Vaidya space-time consisting of a col...
We analyze Hawking radiation as perceived by a freely-falling observer and try to draw an inference ...
A uniformly accelerating observer perceives the Minkowski vacuum state as a thermal bath of radiatio...
We analyse the effect of velocity and acceleration on the temperature felt by particles and strings ...
In analyzing the nature of thermal radiance experienced by an accelerated observer (Unruh effect), a...
AbstractWe present a novel mechanism for the present acceleration of the universe. We find that the ...
AbstractWe present a novel mechanism for the present acceleration of the universe. We find that the ...
This paper explains the origin of the Unruh Temperature, in terms of disagreements, on the number of...
Acceleration radiation—or Unruh radiation—the thermal radiation observed by an ever accelerating obs...
We study the perception of the radiation phenomena of Hawking radiation and Unruh effect by using tw...
In analyzing the nature of thermal radiance experienced by an accelerated observer (Unruh effect), a...
We study the quantum effects of a test Klein-Gordon field in a Vaidya space-time consisting of a col...
The Unruh effect states that a uniformly linearly accelerated observer with proper acceleration a ex...
The quantum mechanical evolution of an accelerated extended detector coupled to a massless scalar fi...
An important question in the derivation of the acceleration radiation, which also arises in Hawking'...
We study the quantum effects of a test Klein-Gordon field in a Vaidya space-time consisting of a col...
We analyze Hawking radiation as perceived by a freely-falling observer and try to draw an inference ...
A uniformly accelerating observer perceives the Minkowski vacuum state as a thermal bath of radiatio...
We analyse the effect of velocity and acceleration on the temperature felt by particles and strings ...
In analyzing the nature of thermal radiance experienced by an accelerated observer (Unruh effect), a...
AbstractWe present a novel mechanism for the present acceleration of the universe. We find that the ...