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Teoreticheskaya i Matematicheskaya Fizika, 1974, Volume 18, Number 1, Pages 121–129 (Mi tmf3523)  

This article is cited in 27 scientific papers (total in 27 papers)

Reux operators of physical variables and the method of quasiaverages

S. V. Peletminskii, A. I. Sokolovsky
References:
Abstract: General expressions are found for the operators of the flux densities of physical variables in terms of the density operators of these variables. The method of quasiaverages and the expressions found for the flux operators are used to obtain the averages of these operators in terms of the thermodynamic potential in a state of statistical equilibrium of a superfluid liquid.
Received: 25.12.1972
English version:
Theoretical and Mathematical Physics, 1974, Volume 18, Issue 1, Pages 85–91
DOI: https://doi.org/10.1007/BF01036930
Bibliographic databases:
Language: Russian
Citation: S. V. Peletminskii, A. I. Sokolovsky, “Reux operators of physical variables and the method of quasiaverages”, TMF, 18:1 (1974), 121–129; Theoret. and Math. Phys., 18:1 (1974), 85–91
Citation in format AMSBIB
\Bibitem{PelSok74}
\by S.~V.~Peletminskii, A.~I.~Sokolovsky
\paper Reux operators of physical variables and the method of quasiaverages
\jour TMF
\yr 1974
\vol 18
\issue 1
\pages 121--129
\mathnet{http://mi.mathnet.ru/tmf3523}
\zmath{https://zbmath.org/?q=an:0292.65065|0313.65110}
\transl
\jour Theoret. and Math. Phys.
\yr 1974
\vol 18
\issue 1
\pages 85--91
\crossref{https://doi.org/10.1007/BF01036930}
Linking options:
  • https://www.mathnet.ru/eng/tmf3523
  • https://www.mathnet.ru/eng/tmf/v18/i1/p121
  • This publication is cited in the following 27 articles:
    1. M. Yu. Kovalevsky, A. A. Rozhkov, “About influence of conformational degrees of freedom on spectra of collective excitations in disordered superfluid A-phase of 3He”, Low Temperature Physics, 51:1 (2025), 21  crossref
    2. Kuzemsky A.L., “Bogoliubov's Vision: Quasiaverages and Broken Symmetry to Quantum Protectorate and Emergence”, International Journal of Modern Physics B, 24:8 (2010), 835–935  crossref  isi
    3. S. O. Nikolayenko, Yu. V. Slyusarenko, “Microscopic theory of relaxation processes in systems of particles interacting with the hydrodynamic medium”, Journal of Mathematical Physics, 50:8 (2009)  crossref
    4. A.S. Peletminskii, “Hydrodynamic Lagrangian of relativistic superfluids with crystalline structure”, Physics Letters A, 373:37 (2009), 3369  crossref
    5. O. I. Sokolovs'kyi, A. A. Stupka, “Equations of Electrodynamics in a Hydrodynamic Medium with Regard for Nonequilibrium Fluctuations”, Ukr Math J, 57:6 (2005), 1004  crossref
    6. Peletminsky, AS, “Variational principle in the spatially periodic Bose condensate theory”, Laser Physics, 12:1 (2002), 162  isi
    7. ROBERTO LUZZI, ÁUREA R. VASCONCELLOS, J. GALVÃO RAMOS, “A NONEQUILIBRIUM STATISTICAL ENSEMBLE FORMALISM MaxEnt–NESOM: Basic Concepts, Construction, Application, Open Questions and Criticisms”, Int. J. Mod. Phys. B, 14:28 (2000), 3189  crossref
    8. Sergio A. Hassan, Aurea R. Vasconcellos, Roberto Luzzi, “The informational-statistical-entropy operator in a nonequilibrium ensemble formalism”, Physica A: Statistical Mechanics and its Applications, 262:3-4 (1999), 359  crossref
    9. Justino R. Madureira, Áurea R. Vasconcellos, Roberto Luzzi, “On a generalized Gibbs–Boltzmann ensemble formalism for dissipative systems”, Physica A: Statistical Mechanics and its Applications, 257:1-4 (1998), 424  crossref
    10. Justino R. Madureira, Áurea R. Vasconcellos, Roberto Luzzi, “A nonequilibrium statistical grand-canonical ensemble: Description in terms of flux operators”, The Journal of Chemical Physics, 109:6 (1998), 2099  crossref
    11. Roberto Luzzi, Áurea R. Vasconcellos, David Jou, José Casas-Vázquez, “Thermodynamic variables in the context of a nonequilibrium statistical ensemble approach”, The Journal of Chemical Physics, 107:18 (1997), 7383  crossref
    12. Roberto Luzzi, Aurea R. Vasconcellos, “The basic principles of irreversible thermodynamics in the context of an informational-statistical approach”, Physica A: Statistical Mechanics and its Applications, 241:3-4 (1997), 677  crossref
    13. Mário A. Tenan, Áurea R. Vasconcellos, Roberto Luzzi, “Statistical-Mechanical Foundations for a Generalized Thermodynamics of Dissipative Processes”, Fortschr. Phys., 45:1 (1997), 1  crossref
    14. J. G. Ramos, A. R. Vasconcellos, Roberto Luzzi, “Physicochemical aspects of an industrial process”, Int. J. Quant. Chem., 65:3 (1997), 277  crossref
    15. M. Yu. Kovalevsky, S. V. Peletminskii, “Hydrodynamic theory of magnets with complete spontaneous symmetry breaking”, Theoret. and Math. Phys., 100:1 (1994), 846–856  mathnet  crossref  isi
    16. N. M. Lavrinenko, “Modulated antiferromagnetic structure on a plane triangular lattice”, Low Temperature Physics, 20:9 (1994), 698  crossref
    17. A. I. Gol'dshtein, V. N. Poturaev, I. A. Shulyak, “Structure of the equations of hydrodynamics for a medium consisting of inelastic rough spheres”, Fluid Dyn, 25:2 (1990), 305  crossref
    18. M. Yu. Kovalevsky, S. V. Peletminskii, Yu. V. Slusarenko, “Thermodynamics and kinetics of spiral magnetic structures and the method of quasiaverages”, Theoret. and Math. Phys., 74:2 (1988), 186–196  mathnet  crossref  mathscinet  isi
    19. M. Yu. Kovalevsky, S. V. Peletminskii, A. A. Rozhkov, “Green's functions of spiral magnets in the hydrodynamic and quasiparticle approximations”, Theoret. and Math. Phys., 75:1 (1988), 388–398  mathnet  crossref  isi
    20. N. M. Lavrinenko, S. V. Peletminskii, “Thermodynamics and equations of motion of quantum crystals”, Theoret. and Math. Phys., 66:2 (1986), 207–215  mathnet  crossref  mathscinet  isi
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
    Теоретическая и математическая физика Theoretical and Mathematical Physics
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