The thermodynamical partition function of the Duffin-Kemmer-Petiau theory is evaluated using the imaginary-time formalism of quantum field theory at finite temperature and path integral methods. The DKP partition function displays two features: (i) full equivalence with the partition function for charged scalar particles and charged massive spin 1 particles; and (ii) the zero mode sector which is essential to reproduce the well-known relativistic Bose-Einstein condensation for both theories. (C) 2003 Published by Elsevier B.V
We present a field-theoretical method to obtain consistently the equations of motion for small ampli...
The thermodynamical partition functions for both the Schwinger and Thirring models are evaluated. Th...
It is known one may use Feynman’s path integral approach to solve for a quantum propagator. Setting ...
The thermodynamical partition function of the Duffin–Kemmer–Petiau theory is evaluated using the ima...
We prove the equivalence of many-photon Green functions in statistical quantum field Duffin-Kemmer-P...
We prove the equivalence of many-photon Green functions in statistical quantum field Duffin-Kemmer-P...
The Duffin-Kemmer-Petiau (DKP) equation is written for a spinless boson particle interacting with a ...
We study the phenomenon of Bose-Einstein condensation in cosmological and laboratory situations. To ...
In this article an introduction to the thermal field theory within imaginary time vis-a-vis Matsubar...
We introduce the boundary conditions corresponding to the imaginary-time (Matsubara) formalism for t...
The Duffin-Kemmer-Petiau (DKP) relativistic equation has been recently uded to study the interaction...
Abstract. The heat kernel trace in a (D+1)-dimensional Euclidean spacetime is used to de-rive free e...
Funding Information: This work was supported by the Academy of Finland through the Finnish Centre of...
This work explores the quantum dynamics of the interaction between scalar (matter) and vectorial (in...
In this work we study the electromagnetic field at finite temperature via the massless DKP formalism...
We present a field-theoretical method to obtain consistently the equations of motion for small ampli...
The thermodynamical partition functions for both the Schwinger and Thirring models are evaluated. Th...
It is known one may use Feynman’s path integral approach to solve for a quantum propagator. Setting ...
The thermodynamical partition function of the Duffin–Kemmer–Petiau theory is evaluated using the ima...
We prove the equivalence of many-photon Green functions in statistical quantum field Duffin-Kemmer-P...
We prove the equivalence of many-photon Green functions in statistical quantum field Duffin-Kemmer-P...
The Duffin-Kemmer-Petiau (DKP) equation is written for a spinless boson particle interacting with a ...
We study the phenomenon of Bose-Einstein condensation in cosmological and laboratory situations. To ...
In this article an introduction to the thermal field theory within imaginary time vis-a-vis Matsubar...
We introduce the boundary conditions corresponding to the imaginary-time (Matsubara) formalism for t...
The Duffin-Kemmer-Petiau (DKP) relativistic equation has been recently uded to study the interaction...
Abstract. The heat kernel trace in a (D+1)-dimensional Euclidean spacetime is used to de-rive free e...
Funding Information: This work was supported by the Academy of Finland through the Finnish Centre of...
This work explores the quantum dynamics of the interaction between scalar (matter) and vectorial (in...
In this work we study the electromagnetic field at finite temperature via the massless DKP formalism...
We present a field-theoretical method to obtain consistently the equations of motion for small ampli...
The thermodynamical partition functions for both the Schwinger and Thirring models are evaluated. Th...
It is known one may use Feynman’s path integral approach to solve for a quantum propagator. Setting ...