Unified Approach for Molecular Dynamics and Density-Functional Theory
Единый подход к молекулярной динамике и теории функционала плотности
1985-11-25
SCID: 54.1/av6wxupe
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beyond pair-potentialcrystalline silicondensity-functional theorymolecular dynamicsself-consistent pseudopotential
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Abstract (AI)
We present a unified scheme that, by combining molecular dynamics and density-functional theory, profoundly extends the range of both concepts. Our approach extends molecular dynamics beyond the usual pair-potential approximation, thereby making possible the simulation of both covalently bonded and metallic systems. In addition it permits the application of density-functional theory to much larger systems than previously feasible. The new technique is demonstrated by the calculation of some static and dynamic properties of crystalline silicon within a self-consistent pseudopotential framework.
Key Findings
1
Allowed application of DFT to much larger systems than previously feasible.
2
Demonstrated the technique by computing static and dynamic properties of crystalline silicon within a self-consistent pseudopotential framework.
3
Extended MD beyond the usual pair-potential approximation, enabling simulation of covalently bonded and metallic systems.
4
Introduced a unified scheme that combines molecular dynamics (MD) and density-functional theory (DFT), extending capabilities of both methods.
Research Object
Unified computational scheme combining molecular dynamics and density-functional theory applied to crystalline silicon (self-consistent pseudopotential framework)
Research Subject
Extending molecular dynamics beyond pair-potentials and scaling density-functional theory to larger systems to compute static and dynamic properties of crystalline silicon
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Publication Date
1985-11-25
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