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Quantum Foundations
Generalized Gaussian wave packet dynamics: Integrable and Chaotic Systems
arXiv
Authors: Harinder Pal, Manan Vyas, Steven Tomsovic
Year
2015
Paper ID
26484
Status
Preprint
Abstract Read
~2 min
Abstract Words
180
Citations
N/A
Abstract
The ultimate semiclassical wave packet propagation technique is a complex, time-dependent WBK method known as generalized Gaussian wave packet dynamics (GGWPD). It requires overcoming many technical difficulties in order to be carried out fully in practice. In its place roughly twenty years ago, linearized wave packet dynamics was generalized to methods that include sets of off-center, real trajectories for both classically integrable and chaotic dynamical systems that completely capture the dynamical transport. The connections between those methods and GGWPD are developed in a way that enables a far more practical implementation of GGWPD. The generally complex saddle point trajectories at its foundation are found using a multi-dimensional, Newton-Raphson root search method that begins with the set of off-center, real trajectories. This is possible because there is a one-to-one correspondence. The neighboring trajectories associated with each off-center, real trajectory form a path that crosses a unique saddle; there are exceptions which are straightforward to identify. The method is applied to the kicked rotor to demonstrate the accuracy improvement as a function of hbar that comes with using the saddle point trajectories.
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- This paper contributes to the Quantum Foundations research area in the Quantum Articles archive.
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- The ultimate semiclassical wave packet propagation technique is a complex, time-dependent WBK method known as generalized Gaussian wave packet dynamics (GGWPD).
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