
WaveSimPro
Resources
Video Gallery
Getting started with WaveSimPro — build and run your first simulation in the browser
A complete walkthrough of a full-wave electromagnetic simulation, from an empty domain to a visualized result, with nothing to install.
In this video we create a sphere as the model geometry, import fused silica from the built-in medium library, create a custom medium by complex refractive index, and assign it to the sphere. We then add an X-polarized plane wave source, run the simulation in the cloud, and explore the resulting field in the 3D viewer.
WaveSimPro Starter-Kit — Examples
A quick walkthrough of the example scripts that ship with the WaveSimPro starter kit — full-wave Maxwell and scalar Helmholtz solves run on the WaveSimPro cloud, from one-line simulate calls to wavelength-scale application showcases.
You'll see getting-started building blocks (sources & media), accuracy checks against analytic theory and reference fields, and realistic devices where diffraction and interference matter: metalenses, photonic crystals, holograms, grating couplers, MMI splitters, and CMOS light-trapping pixels.
Full-Wave MBS Simulation of a CMOS Image Sensor IPA & DTI
A 5×5 CMOS image-sensor pixel array — microlenses, inverted-pyramid light trapping (IPA) and deep-trench isolation (DTI) — simulated in full-wave 3D at 850 nm. Geometry from a published IR-enhanced pixel design (Yokogawa et al., Sci. Rep. 7:3832).
The simulation matches the paper's published FDTD results from a 20 nm grid (λ/12 inside the silicon) where the original used a 4 nm (~λ/60) mesh — 27 Mvoxels instead of ~3.4 Gvoxels — and runs in ~6 minutes on a single GPU in WaveSimPro cloud. One of the application examples in the WaveSimPro starter kit.