Fluoride Optic Laser-Damage Simulator (2D)
Interactive 2D cross-section simulator of color-center (F-center) buildup in a CaF₂ or MgF₂ deep-UV excimer laser window: watch defects nucleate pulse by pulse, transmission fade, and catastrophic laser-induced damage trigger once absorption crosses threshold. Drag to pan, scroll to zoom.
Fluoride nanomaterials such as CaF₂ and MgF₂ are prized for deep-UV optics precisely because of their wide bandgap and broad UV-to-IR transparency — but sustained excimer-laser irradiation still damages them, one pulse at a time. This 2D cross-section simulator fires a virtual pulse train of 157/193/248 nm excimer light at a crystal window and grows F-centers (color-center point defects) inside it pulse by pulse, following a saturable generation-minus-thermal-annealing model. Watch the crystal darken as color-center density rises, transmission drops on the live Beer–Lambert readout, and — if you push fluence or repetition rate too far — the optic crosses its damage threshold and fails catastrophically, exactly as a real ArF or F₂ lithography lens element would. Drag the view to pan and scroll to zoom in on the defect field.
A 2D cross-section simulator of color-center (F-center) buildup in a CaF2 or MgF2 deep-UV excimer laser window: fire a virtual pulse train at the crystal and watch defects nucleate, transmission fade on a live Beer-Lambert readout, and catastrophic laser-induced damage trigger once the defect density crosses threshold — the same saturable generation/thermal-annealing model as the 3D version, seen edge-on with drag-to-pan and scroll-to-zoom.
2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install