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The Gaussian Approximation Potential

by Bartόk-Pártay, Albert.
Authors: SpringerLink (Online service) Series: Springer Theses, Recognizing Outstanding Ph.D. Research, 2190-5053 Physical details: XIV, 90 p. online resource. ISBN: 364214067X Subject(s): Physics. | Physics. | Solid State Physics. | Theoretical, Mathematical and Computational Physics.
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E-Book E-Book AUM Main Library 530.41 (Browse Shelf) Not for loan

Representation of Atomic Environments -- Gaussian Process -- Interatomic Potentials -- Computational Methods -- Results -- Conclusion and Further Work -- Appendices.

Simulation of materials at the atomistic level is an important tool in studying microscopic structures and processes. The atomic interactions necessary for the simulations are correctly described by Quantum Mechanics, but the size of systems and the length of processes that can be modelled are still limited. The framework of Gaussian Approximation Potentials that is developed in this thesis allows us to generate interatomic potentials automatically, based on quantum mechanical data. The resulting potentials offer several orders of magnitude faster computations, while maintaining quantum mechanical accuracy. The method has already been successfully applied for semiconductors and metals.

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