Detailed video tutorials with slides can be found here

A few of these are listed below:

  1. What is OghmaNano
  2. Installing OghmaNano
  3. Making a new simulation
  4. Editing electrical parameters
  5. Optical simulations and adding new optical materials
  6. Time domain simulations and perovskites
  7. OFET simulation and finance difference meshing.
  8. Dumping more data to disk.
  9. OLEDs.
  10. Closing remarks

The user manual can be found here

Selected YouTube videos - subscribe for many more!

  1. simulating ofets with OghmaNano
  2. Setting up electrical and optical simulations in OghmaNano
  3. Importing new materials into OghmaNano
  4. How to optimize simulations in OghmaNano so they run faster
  5. Importing fdtd charge generation profiles into OghmaNano
  6. Simulating solar cells using a raspberry pi 3.0
  7. Ray tracing in OLEDs using OghmaNano (Organic LEDs)
  8. Translating OghmaNano in to non-english languages
  9. Overview of recent improvements in OghmaNano version 4.72.1
  10. general purpose photovoltaic model (OghmaNano) v4.7 release video
  11. porting an application from gtk 2.7 to qt 5 (a story of opengl widgets)
  12. Simulating a single JV curve in the light and dark with OghmaNano
  13. Simulating CELIV transients with OghmaNano.
  14. Performing optical simulations with OghmaNano.


Worksheets for students with homeworks (pdf)

Introduction to simulating solar cells - Workbook 1 (pdf): A work sheet with a literature review at the beginning.

Introduction to simulating solar cells - Workbook 1 (pdf): A work sheet without a literature review at the beginning.

Some slides explaining the worksheets:: These slides give a very simple and very short introduction to modeling solar cells. This is aimed at people without a semiconductor physics background and only want to know the basics.