Quantum trajectories /

Applying quantum mechanics to many-particle systems is an active area of research. The popularity of using quantum trajectories as a computational tool has exploded over the last decade, finally bringing this methodology to the level of practical application. This book explores this powerful tool to...

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Bibliographic Details
Corporate Author: Taylor & Francis
Other Authors: Chattaraj, Pratim Kumar
Format: eBook
Language:English
Published: Boca Raton : CRC Press, 2011.
Subjects:
Online Access:Connect to the full text of this electronic book
Table of Contents:
  • chapter 1. Bohmian trajectories as the foundation of quantum mechanics / Sheldon Goldstein, Roderich Tumulka, and Nino Zanghi
  • chapter 2. The equivalence postulate of quantum mechanics : main theorems / Alon E. Faraggi and Marco Matone
  • chapter 3. Quantum trajectories and entanglement / Edward R. Floyd
  • chapter 4. Quantum dynamics and supersymmetric quantum mechanics / Eric R. Bittner and Donald J. Kouri
  • chapter 5. Quantum field dynamics from trajectories / Peter Holland
  • chapter 6. The utility of quantum forces / Gary E. Bowman
  • chapter 7. Quantum trajectories in phase space / Craig C. Martens, Arnaldo Donoso, and Yujun Zheng
  • chapter 8. On the possibility of empirically probing the Bohmian model in terms of the testability of quantum arrival/Transit time distribution / Dipankar Home and Alok Kumar Pan
  • chapter 9. Semiclassical implementation of Bohmian dynamics / Vitaly Rassolov and Sophya Garashchuk
  • chapter 10. Mixed quantum/Classical dynamics : Bohmian and DVR stochastic trajectories / Christoph Meier, J. Alberto Beswick, and Tarik Yefsah
  • chapter 11. A hybrid hydrodynamic-liouvillian approach to non-Markovian dynamics / Keith H. Hughes and Irene Burghardt
  • chapter 12. Quantum fluid dynamics within the framework of density functional theory / Swapan K. Ghosh
  • chapter 13. An account of quantum interference from a hydrodynamical perspective / Angel S. Sanz and Salvador Miret-Artes
  • chapter 14. Quantum fluid density functional theory and chemical reactivity dynamics / Santanab Giri. [and others]
  • chapter 15. Bipolar quantum trajectory methods / Bill Poirier
  • chapter 16. Nondifferentiable Bohmian trajectories / Gebhard Grubl and Markus Penz
  • chapter 17. Nonadiabatic dynamics with quantum trajectories / Gerard Parlant
  • chapter 18. Recent analytical studies of complex quantum trajectories / Chia-Chun Chou and Robert E. Wyatt
  • chapter 19. Modified de Broglian mechanics and the dynamical origin of quantum probability / Moncy V. John
  • chapter 20. Types of trajectory guided grids of coherent states for quantum propagation / Dmitrii V. Shalashilin
  • chapter 21. Direct numerical solution of the quantum hydrodynamic equations of motion / Brian K. Kendrick
  • chapter 22. Bohmian grids and the numerics of Schrodinger evolutions / D.-A. Deckert, D. Durr, and P. Pickl
  • chapter 23. Approximate quantum trajectory dynamics in imaginary and real time : calculation of reaction rate constants / Sophya Garashchuk
  • chapter 24. Dynamical systems approach to Bohmian mechanics / F. Borondo.