Tutorials & Applications
Articles in this section are multi-part guides which provide insight into using Ansys Zemax OpticStudio for specific real-world applications. Using the articles in this section, you will learn how to set up your design to complete an industry-focused objective, or how to use OpticStudio as part of a multi-physics workflow. Articles in this section assume knowledge of all of Zemax OpticStudio's features, including optimization, tolerancing, and some programming.
- Modelling a holographic waveguide for Augmented Reality (AR) systems: part 2
- Modelling of a Shack-Hartmann Sensor for eye aberration evaluation
- Ophthalmic lens design
- Optical Zoom based on Alvarez Freeform Elements
- OpticStudio models of the human eye
- Optimization of Exit Pupil Expander with 2D out-coupler
- PCR Fluorescence Modeling with OpticStudio
- Realistic modeling of relief-type diffractive intraocular lenses using User-Defined Surface DLLs
- Simulating diffraction efficiency of a volume holographic grating using Kogelnik’s method
- Simulating diffraction efficiency of surface-relief grating using the RCWA method
- Simulating Purple Fringing Using Sensor RGB Response
- Simulation of Volume Holographic Grating Using Rigorous Coupled-Wave Analysis Method
- Simulation of Young's interference experiment via geometric ray tracing in OpticStudio
- Single-mode fiber coupling in OpticStudio
- STOP Analysis of high-power laser systems - part 1
- STOP Analysis of high-power laser systems - part 2
- STOP Analysis of high-power laser systems - part 3
- STOP Analysis of high-power laser systems - part 4
- Stray light analysis for Head-up-Display - Part 1
- Stray light analysis for Head-up-Display - Part 2
- Stray light analysis for Head-up-Display - Part 3
- Street Light Reflector Design using OpticStudio Dynamic Link
- Using diffractive surfaces to model intraocular lenses
- Which tools to use when working on a Head-up-Display?