Optical Design of Non-Imaging Systems with Ray-tracing software

Optical Design of Non-Imaging Systems with Ray-tracing software

VUB
Hybrid
4 ECTS
Phortify Self-standing Modules

Optical Design of Non-Imaging Systems with Ray-tracing software

The focus of this course is on the practical design of non-imaging optical systems through hands-on exercises at the computer. Practical examples of illumination systems, concentrators, optical filters and coherent light propagation will be tackled in commercial ray-tracing software.

In this course we:

  1. introduce ray-trace simulation software (Principles of ray-tracing, sequential/non-sequential ray-tracing, Implementation of optical systems in ray-tracing software, Implementation of light sources in ray-tracing software, Evaluation of ray-trace results (spot diagrams...)),
  2. gain insight in optimization an optical system (Variables and free-form surfaces, Merit functions and parameter sweeps, Optimization methodologies),
  3. obtain an understanding in ‘homogenization and concentration’ of light (Basic concepts of radiometry, Analysing energy distributions, Optical components to realize uniform light distributions, Light concentration: fundamental limits),
  4. analyse scattering and stray-light (Ray-multiplication, Modelling scattering, Scatter analysis methods, exercises in commercial ray-tracing software of stray-light analysis and illumination systems using scattering),
  5. introduce wave optics (Limitations of standard ray-tracing, Modelling interference and diffraction by using the Gaussian beam superposition method, Design of optical systems in commercial ray-tracing software with important interference/diffraction properties (e.g. fibre coupler, interferometer, laser beam shaping));
  6. investigate multilayers and colour (Principles of thin-film interference filters, The quarter-wave coating as starting design for different optical filters, Photometry and colour, Design of multilayer coatings with Essential Macleod and analysing the system performance in commercial ray-tracing software).

Organisers

VUB

Delivery mode

Hybrid

Location

Online and Brussels, Belgium

Timing

Fixed Schedule

Target audience

MSc students
PhD researchers
Academic staff
Industry Professionals

Language

English

Learning outcomes

This course module gives to the student the needed basic knowledge to design, evaluate and optimize non-imaging systems. Imaging systems are subject of the course ‘Design of Refractive and Diffractive Optical Imaging Systems’. Because of this complementarity it is advised to the student to follow both courses in order to have a total overview of all types of systems.

Topical Area(s) covered in this module

Optical design & engineering

Duration or workload

4 ECTS

Competence level

Advanced

Temporal mode

Scheduled sessions (real-time participation required)

Timing and availability

Fixed Schedule

Learning formats

Lecture
Exercises
Project work

Pricing

€ 363,80

Target audience

MSc students
PhD researchers
Academic staff
Industry Professionals

Entry requirements

Intermediate knowledge in optics.

Assessment method(s)

Exam
Project work
Oral presentation

Exam format

On-campus (scheduled)

Organisers

VUB logo
VUB

Contact

Prof. Dr. In. 

Heidi 

Ottevaere

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