Case Studies
This page groups device cases that can be reproduced from published paper parameters by Propagation and Emission simulation. Each article provides the structure, optical settings, sweep or optimization configuration, and a comparison with the paper’s figures.
The cases have no required order. Choose any case that interests you.
Propagation Simulation
Section titled “Propagation Simulation”The main detectors and reproduction focus for each case are summarized below.
| Case | Main detectors | Main problem type |
|---|---|---|
| Omnidirectional Reflector | Reflectance |
wide-angle high reflectance, polarization splitting, stop-band stability |
| Tamm Plasmon at a Metal-DBR Interface | Reflectance, Electric Field |
narrow resonance and interface-field localization |
| Ultrathin Absorbing Coatings | Reflection Spectrum, Reflection Color |
thickness-driven spectral and color change |
Planned expansion directions
Section titled “Planned expansion directions”Future cases will continue to cover:
- anti-reflection coatings
- high reflectors and DBRs
- band-pass / long-pass / short-pass / notch filters
- dichroic mirrors and beam splitters
- front-optics analysis for solar cells
- color films
- ellipsometric sensitivity analysis
- depth-field and local-absorption localization
Emission Simulation
Section titled “Emission Simulation”- Microcavity PeLED Angular Emission
- Top-Emitting QLED Outcoupling
- Regular Tandem QLED Outcoupling
- Tandem QLED Cavity Optimization
| Case | Main detectors | Reproduction focus |
|---|---|---|
| Microcavity PeLED Angular Emission | Intensity |
angle-dependent spectral shift and forward emission |
| Top-Emitting QLED Outcoupling | Mode, Power Dissipation |
bottom/top-emitting mode partition and two-IZO sweep |
| Regular Tandem QLED Outcoupling | Mode |
separate bottom-unit, top-unit, and tandem contributions |
| Tandem QLED Cavity Optimization | Mode |
spectrum-weighted single and tandem cavity maps |
Back to method pages
Section titled “Back to method pages”Going further
Section titled “Going further”These tutorials cover the operating steps only. The physics behind them, the full parameter reference for each feature, how to read the results, and the algorithm validation all live on the documentation site:
- Transfer-Matrix Method — the physics and formulas behind these tutorials
- Feature Guide — complete reference for every screen and parameter
- Results — how to read each kind of output
- Open Dreapex TMM — build and simulate in the browser