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November 4, 2022Advances in Physics X66 citationsOpen Access

Interatomic potentials: achievements and challenges

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MMMartin H. MüserSSSergey V. SukhomlinovLPLars Pastewka

Key Points

  • The aim is to explore the design and constraints of interatomic potentials for atomic interaction simulations.
  • Reviewed various empirical interatomic potentials including two-body, embedded-atom, and bond-order models.
  • Analyzed how functional forms of potentials impact properties like defect energies and elastic attributes.
  • Emphasized pedagogical clarity to present simpler models for analytical treatments.
  • Highlighted challenges in modeling with traditional potentials regarding defect and cohesive energy ratios.
  • Showed differences in boiling to melting temperature ratios based on potential types, particularly in metals.
  • Discussed the viability of combining existing approaches for enhanced simulation methodologies.

Abstract

ABSTRACTInteratomic potentials approximate the potential energy of atoms as a function of their coordinates. Their main application is the effective simulation of many-atom systems. Here, we review empirical interatomic potentials designed to reproduce elastic properties, defect energies, bond breaking, bond formation, and even redox reactions. We discuss popular two-body potentials, embedded-atom models for metals, bond-order potentials for covalently bonded systems, polarizable potentials including charge-transfer approaches for ionic systems and quantum-Drude oscillator models mimicking higher-order and many-body dispersion. Particular emphasis is laid on the question what constraints ensue from the functional form of a potential, e.g., in what way Cauchy relations for elastic tensor elements can be violated and what this entails for the ratio of defect and cohesive energies, or why the ratio of boiling to melting temperature tends to be large for potentials describing metals but small for short-ranged pair potentials. The review is meant to be pedagogical rather than encyclopedic. This is why we highlight potentials with functional forms sufficiently simple to remain amenable to analytical treatments. Our main objective is to provide a stimulus for how existing approaches can be advanced or meaningfully combined to extent the scope of simulations based on empirical potentials.

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Cite This Study

Müser et al. (2022) studied this question.

synapsesocial.com/papers/6a0f6a9028c2d29469fe17b6https://doi.org/10.1080/23746149.2022.2093129
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