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Classical and quantum dissipative systems / Mohsen Razavy.

By: Material type: TextTextPublication details: London : Imperial College, 2005.Description: 1 online resource (xv, 334 pages)Content type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 1860949185
  • 9781860949180
Subject(s): Genre/Form: Additional physical formats: Print version:: Classical and quantum dissipative systems.DDC classification:
  • 530.4/16 22
LOC classification:
  • QC173.458.E53 R39 2005eb
Online resources:
Contents:
Machine generated contents note: 1. Introduction -- 2. Phenomenological equations of motion for dissipative systems -- 3. Lagrangian formulations -- 4. Hamiltonian formulation -- 5. Hamilton-Jacobi formulation -- 6. Motion of a charge particle in an external electromagnetic field in the presence of damping -- 7. Noether and non-noether symmetries and conservation laws -- 8. Dissipative forces derived from many-body problems -- 9. particle coupled to a field -- 10. Damped motion of the central particle -- 11. Classical microscopic models of dissipation and minimal coupling rule -- 12. Quantization of dissipative systems -- 13. Quantization of explicitly time-dependent Hamiltonian -- 14. Density matrix and the Wigner distribution function -- 15. Path integral formulation of a damped harmonic oscillator -- 16. Quantization of the motion of an infinite chain -- 17. Heisenberg equations of motion for a particle coupled to a heat bath -- 18. Quantum mechanical models of dissipative systems.
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Electronic-Books Electronic-Books OPJGU Sonepat- Campus E-Books EBSCO Available

Includes bibliographical references and index.

Print version record.

Machine generated contents note: 1. Introduction -- 2. Phenomenological equations of motion for dissipative systems -- 3. Lagrangian formulations -- 4. Hamiltonian formulation -- 5. Hamilton-Jacobi formulation -- 6. Motion of a charge particle in an external electromagnetic field in the presence of damping -- 7. Noether and non-noether symmetries and conservation laws -- 8. Dissipative forces derived from many-body problems -- 9. particle coupled to a field -- 10. Damped motion of the central particle -- 11. Classical microscopic models of dissipation and minimal coupling rule -- 12. Quantization of dissipative systems -- 13. Quantization of explicitly time-dependent Hamiltonian -- 14. Density matrix and the Wigner distribution function -- 15. Path integral formulation of a damped harmonic oscillator -- 16. Quantization of the motion of an infinite chain -- 17. Heisenberg equations of motion for a particle coupled to a heat bath -- 18. Quantum mechanical models of dissipative systems.

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