Themean value of the one-loop energy-momentum tensor in thermal QED with an electric-like background that creates particles from vacuum is calculated. The problem is essentially different from calculations of effective actions ( similar to the action of Heisenberg-Euler) in backgrounds that respect the stability of vacuum. The role of a constant electric background in the violation of both the stability of vacuum and the thermal character of particle distribution is investigated. Restrictions on the electric field and the duration over which one can neglect the back-reaction of created particles are established
We study neutral fermions pair creation with anomalous magnetic moment from the vacuum by time-indep...
Quantum vacuum friction experienced by an atom, where the only dissipative mechanism is through its ...
In this paper, we present in detail consistent QED (and scalar QED) calculations of particle creatio...
Themean value of the one-loop energy-momentum tensor in thermal QED with an electric-like background...
We have obtained nonperturbative one-loop expressions for the mean-energy-momentum tensor and curren...
We have obtained nonperturbative one-loop expressions for the mean-energy-momentum tensor and curren...
Basic quantum processes (such as particle creation, reflection, and transmission on the correspondin...
This thesis is a guide to a selection of the author's published work that connect and contribute to ...
The features of vacuum particle creation in an external classical field are studied for simplest ext...
Abstract In the framework of QED with a strong background, we study particle creation (the Schwinger...
The fundamental vacuum state of quantum fields, related to Minkowski space, produces divergent fluct...
We study statistical properties of states of massive quantized charged Dirac and Klein-Gordon fields...
We consider the time evolution of a quantized field in backgrounds that violate the vacuum stability...
The energy density of the vacuum is still one of the unsolved questions in physics. Principally it s...
Nonperturbative methods have been well developed for QED with the so-called t-electric potential ste...
We study neutral fermions pair creation with anomalous magnetic moment from the vacuum by time-indep...
Quantum vacuum friction experienced by an atom, where the only dissipative mechanism is through its ...
In this paper, we present in detail consistent QED (and scalar QED) calculations of particle creatio...
Themean value of the one-loop energy-momentum tensor in thermal QED with an electric-like background...
We have obtained nonperturbative one-loop expressions for the mean-energy-momentum tensor and curren...
We have obtained nonperturbative one-loop expressions for the mean-energy-momentum tensor and curren...
Basic quantum processes (such as particle creation, reflection, and transmission on the correspondin...
This thesis is a guide to a selection of the author's published work that connect and contribute to ...
The features of vacuum particle creation in an external classical field are studied for simplest ext...
Abstract In the framework of QED with a strong background, we study particle creation (the Schwinger...
The fundamental vacuum state of quantum fields, related to Minkowski space, produces divergent fluct...
We study statistical properties of states of massive quantized charged Dirac and Klein-Gordon fields...
We consider the time evolution of a quantized field in backgrounds that violate the vacuum stability...
The energy density of the vacuum is still one of the unsolved questions in physics. Principally it s...
Nonperturbative methods have been well developed for QED with the so-called t-electric potential ste...
We study neutral fermions pair creation with anomalous magnetic moment from the vacuum by time-indep...
Quantum vacuum friction experienced by an atom, where the only dissipative mechanism is through its ...
In this paper, we present in detail consistent QED (and scalar QED) calculations of particle creatio...