Subcontinuum scale analysis of diamond lattice films through spatial multi-level coarsening method

  • Goh, Byeong hwa
  • Choi, Joonmyung
Citations

WEB OF SCIENCE

9
Citations

SCOPUS

10

초록

In this study, a multilevel scalable spatial-coarsening method for diamond structures was developed to selectively scale the space represented by the particles. The bonding relationship between the particles of the interlayer facing different spatial regions is explained by the combination of the potential energies that dominate each side. The proposed method reproduces the tensor properties of the diamond crystal material with high accuracy under thermodynamic equilibrium covering a wide temperature range. Additionally, shock wave characteristics are examined for Si thin-films in which only the surface area is left as the all-atom level and upscaling is performed in the thickness direction. The change in particle velocity and stress due to the potential energy transferred in the thickness direction is maintained even after penetrating the interlevel layer, successfully predicting the all-atom model and experimental results. © 2023 Elsevier Ltd

키워드

Digital twinningHamiltonian particle dynamicsMechanical propertiesMonocrystalline silicon filmMultilevel coarse-grainingFORCE-FIELDORDERSIMULATIONCOMPASSSILICONENERGYCHARGE
제목
Subcontinuum scale analysis of diamond lattice films through spatial multi-level coarsening method
저자
Goh, Byeong hwaChoi, Joonmyung
DOI
10.1016/j.tws.2023.110738
발행일
2023-06
유형
Article
저널명
Thin-Walled Structures
187
페이지
1 ~ 11