Efficient method for simulating quantum electron dynamics under the time dependent Kohn-Sham equation
arXiv:physics/0112015 · doi:10.1103/PhysRevE.65.036705
Abstract
A numerical scheme for solving the time-evolution of wave functions under the time dependent Kohn-Sham equation has been developed. Since the effective Hamiltonian depends on the wave functions, the wave functions and the effective Hamiltonian should evolve consistently with each other. For this purpose, a self-consistent loop is required at every time-step for solving the time-evolution numerically, which is computationally expensive. However, in this paper, we develop a different approach expressing a formal solution of the TD-KS equation, and prove that it is possible to solve the TD-KS equation efficiently and accurately by means of a simple numerical scheme without the use of any self-consistent loops.
5 pages, 3 figures. Physical Review E, 2002, in press
References in corpus (2)
Cited by in corpus (4)
- Dynamics of Berry-phase polarization in time-dependent electric fields
- Exponential Integrators for Stochastic Schrödinger Equation
- Density Functional Tight-Binding Enables Tractable Studies of Quantum Plasmonics
- A Projection-based Reduced-order Method for Electron Transport Problems with Long-range Interactions