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Demonstration Videos

Optus Overview
04:47
Building a Structure
05:51
Multi-Parameter Scan
02:25
Dispersion Curve Construction
03:22

Optus EOMD

Optus EOMD has been developed with the objective of providing the electromagnetic and optical communities with a comprehensive, easy-to-use, rapid and flexible design/modeling/analysis tool for electromagnetic, photonic and optical structures.  Optus EOMD is designed by electromagnetic scientists and specifically designed for rapid design and modeling, and directly generating datasets and plots commonly used by electromagnetic engineers.  Models can be built and simulated in minutes.  Extensive data visualization and presentation methods are incorporated within Optus EOMD, along with the ability to export the data in json files for external analysis.  While specifically built for experienced electromagnetic engineers, Optus EOMD's interface and controls are very intuitive, allowing students to easily use the program to learn electromagnetic, optical, and photonic device design and modeling.  The interface contains all the necessary inputs and controls at the ready, all being clear in their purpose and easy to access.  Features of Optus EOMD include:

  • Uses an optimized and stabilized rigorous coupled wave algorithm (RCWA) that provides detailed information on the optical properties of the structure (e.g., reflection, transmission, diffraction, scattering, field configurations, dispersion curves, multi-parameter scans, integration with far-field analysis tools, and assessment of cross-polarization effects and other complex optical behavior)

  • Uses Ray parallel processing Python package to vastly increase the speed of calculations

  • The use of Plotly graphics to create informative and visually appealing graphics and field animations

  • A materials catalog that provides immediate access to important optical constants (i.e., n and k as a function of frequency) for a wide range of commonly used materials.​

  • The ability to export data as a .json file to allow for post-processing with a variety of other computational tools (e.g., Matlab, Zemax)

Electromagnetic and optical field profile
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