Remarkable progress has recently been made in the application of
quantumtrajectories as the computational tool for solving quantum
mechanical problems. This is the first book to present these
developments in the broader context of the hydrodynamical
formulation of quantum dynamics. In addition to a thorough
discussion of the quantum trajectory equations of motion, there is
considerable material that deals with phase space dynamics,
adaptive moving grids, electronic energy transfer, and trajectories
for stationary states.
On the pedagogical side, a number of sections of this book will
be accessible to students who have had an introductory quantum
mechanics course. There is also considerable material for advanced
researchers, and chapters in the book cover both methodology and
applications. The book will be useful to students and researchers
in physics, chemistry, applied math, and computational
dynamics.
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