An overview on the theoretic formalism and up-to-date applications in quantum condensed matter physics of the effective potential and effective hamiltonian methods is given. The main steps of their unified derivation by the pure-quantum self-consistent harmonic approximation (PQSCHA) are reported and explained. For a given quantum system the PQSCHA yields an effective classical hamiltonian with dependence on the Planck constant and on temperature and classical-like expressions for the averages of observables. The power of this approach has been demonstrated through applications in different fields, as soliton theory, rare-gas crystals, and magnetism.

Effective potential and effective Hamiltonian in quantum statistical mechanics for condensed matter physics

1996

Abstract

An overview on the theoretic formalism and up-to-date applications in quantum condensed matter physics of the effective potential and effective hamiltonian methods is given. The main steps of their unified derivation by the pure-quantum self-consistent harmonic approximation (PQSCHA) are reported and explained. For a given quantum system the PQSCHA yields an effective classical hamiltonian with dependence on the Planck constant and on temperature and classical-like expressions for the averages of observables. The power of this approach has been demonstrated through applications in different fields, as soliton theory, rare-gas crystals, and magnetism.
1996
Istituto dei Sistemi Complessi - ISC
Inglese
V.S. Yarunin, M. Smondyrev
Path Integrals: Dubna '96
5th International Conference Path Integrals from meV to MeV
32
41
10
5-85165-451-1
27-31/05/1996
Dubna, Russia
4
none
Acuccoli, ; Vtognetti, ; Rvaia, ; Pverrucchi,
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/122754
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