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<i>Ab initio</i>molecular dynamics for liquid metals

Physical review. B, Condensed matter · 1993 · Vol. 47(1) · pp. 558–561
Georg KresseJ. Häfner

Abstract

We present ab initio quantum-mechanical molecular-dynamics calculations based on the calculation of the electronic ground state and of the Hellmann-Feynman forces in the local-density approximation at each molecular-dynamics step. This is possible using conjugate-gradient techniques for energy minimization, and predicting the wave functions for new ionic positions using subspace alignment. This approach avoids the instabilities inherent in quantum-mechanical molecular-dynamics calculations for metals based on the use of a fictitious Newtonian dynamics for the electronic degrees of freedom. This method gives perfect control of the adiabaticity and allows us to perform simulations over several picoseconds.

High-pressure geophysics and materialsSpectroscopy and Quantum Chemical StudiesQuantum, superfluid, helium dynamicsDegrees of freedom (physics and chemistry)Molecular dynamicsAb initioPhysicsQuantumElectronic structureQuantum dynamicsGround stateAb initio quantum chemistry methodsWave function
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References
A unified formulation of the constant temperature molecular dynamics methods
The Journal of Chemical Physics · 1984 · 18,423 citations
Unified Approach for Molecular Dynamics and Density-Functional Theory
Physical Review Letters · 1985 · 10,613 citations
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