HomeCybersecurityMosca's Theorem: Quantum Crypto Risk Panels

Mosca's Theorem: Quantum Crypto Risk Panels

Interactive 2D dashboard of Mosca's theorem for post-quantum migration risk: a live Mosca timeline bar, a stacked packet-population area chart, and a shelf-life x Q-day risk heatmap you can drag to explore.

Cybersecurity2DAdvanced60 FPS📱 Mobile-adapted⇄ 3D version
2d-exp-quantum-computing-security ↗ Open standalone

Quantum computers don't need to exist today to threaten today's encrypted traffic. This 2D dashboard dramatizes the "harvest now, decrypt later" attack behind post-quantum migration planning through three linked panels instead of a single 3D scene: a Mosca timeline bar drawing the inequality X + Y > Z as literal overlapping number-line segments, a stacked area chart plotting harvested/safe/vulnerable/exposed/expired packet populations from closed-form formulas as the clock runs, and a risk heatmap sweeping shelf-life against Q-day so you can see the entire risk surface, not just today's slider settings. Drag on the timeline to scrub time directly, or drag on the heatmap to pick new shelf-life and Q-day values — every panel updates together.

⚙ Under the hood

A 2D dashboard version of the 'harvest now, decrypt later' quantum threat: a Mosca timeline bar draws X+Y vs Z as literal number-line segments, a stacked area chart plots harvested/safe/vulnerable/exposed/expired packets from closed-form formulas over time, and a drag-to-pick risk heatmap sweeps shelf-life against Q-day across the whole parameter space.

quantum computingpost-quantum cryptographycybersecurityRSArisk modelingencryptiondata visualization

2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install

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