| name | lammps-md-simulator |
| description | LAMMPS molecular dynamics simulation skill for atomistic simulations, force field setup, and large-scale parallel computations |
| allowed-tools | ["Bash","Read","Write","Edit","Glob","Grep"] |
| metadata | {"specialization":"physics","domain":"science","category":"numerical-simulation","phase":6} |
| graph | {"domains":["domain:physics"],"skillAreas":["skill-area:physics-simulation","skill-area:mathematical-reasoning","skill-area:statistical-analysis"],"workflows":["workflow:experiment-design","workflow:peer-review-cycle"],"roles":["role:computational-scientist","role:research-engineer"]} |
LAMMPS MD Simulator
Purpose
Provides expert guidance on LAMMPS molecular dynamics simulations, including input script generation, force field selection, and parallel execution optimization.
Capabilities
- Input script generation and validation
- Force field selection (EAM, Tersoff, ReaxFF)
- Boundary condition and ensemble configuration
- Thermodynamic property extraction
- Trajectory file analysis
- Parallel run optimization (MPI/GPU)
Usage Guidelines
- Input Script Generation: Create LAMMPS input files with proper syntax and structure
- Force Field Selection: Choose appropriate interatomic potentials for the system
- Ensemble Configuration: Set up NVT, NPT, or NVE ensembles correctly
- Output Analysis: Process dump files and thermodynamic output
- Performance Optimization: Configure parallel execution for HPC environments
Tools/Libraries