| name | lumerical-photonics-simulator |
| description | Lumerical FDTD and MODE skill for nanophotonics, integrated photonics, and solar cell design |
| allowed-tools | ["Bash","Read","Write","Edit","Glob","Grep"] |
| metadata | {"specialization":"physics","domain":"science","category":"optics-photonics","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"]} |
Lumerical Photonics Simulator
Purpose
Provides expert guidance on Lumerical photonics simulations, including FDTD, eigenmode expansion, and integrated device design.
Capabilities
- 2D/3D FDTD simulations
- Eigenmode expansion (EME)
- S-parameter extraction
- Grating coupler optimization
- CW and pulsed source analysis
- CHARGE electrical integration
Usage Guidelines
- FDTD Setup: Configure FDTD simulations for photonic structures
- Mode Analysis: Use MODE for eigenmode calculations
- S-Parameters: Extract S-parameters for circuit modeling
- Optimization: Use built-in optimization tools
- Integration: Combine optical and electrical simulations
Tools/Libraries
- Lumerical FDTD
- MODE
- DEVICE