Published October 2015 | Version v1
Journal article

Numerical simulation of relaxation of quantum thermal fluctuations

  • 1. Rossijskij Universitet 'Druzhbu Narodov', Moskva (Russian Federation)
  • 2. Institut Magnetizma NANU, Kyiv(Ukraine)

Description

A generalization of quantum-mechanical equations expressed in the hydrodynamic form by introducing terms that involve the diffusion velocity at zero and finite temperatures, as well as the diffusion pressure energy in a warm vacuum, into the Lagrangian density has been proposed. It is used as a basis for constructing a system of equations similar to the Euler equations, but making allowance for quantum-mechanical and thermal effects, for the model of one-dimensional hydrodynamics. The equations obtained generalize the equations of the Nelson stochastic mechanics. A numerical analysis of the solutions of this system allowed a conclusion to be drawn about its validity for the description of the relaxation of quantum thermal fluctuations

Additional details

Additional titles

Original title (Russian)
Численное моделирование процесса релаксации квантово-тепловых флуктуаций

Publishing Information

Journal Title
Ukrayins'kij Fyizichnij Zhurnal (Kyiv)
Journal Volume
60
Journal Issue
no.10
Journal Page Range
p. 1063-1076
ISSN
0372-400X