HomeQuantum PhysicsQuantum Repeater Link 3D

Quantum Repeater Link 3D

3D long-distance quantum-link simulator: fly along two parallel channels over the same real fiber-loss physics — a direct link where photons visibly attenuate and vanish with distance because no-cloning forbids copying them, and a repeater-station chain that relays entanglement by swapping instead of cloning, keeping far more of its signal alive over distance.

Quantum Physics3DAdvanced60 FPS📱 Mobile-adapted⇄ 2D version
3d-quantum-communication-physics ↗ Open standalone

This scene lays two long-distance quantum links side by side over identical real fiber-loss physics. The direct channel fires single photons the full distance L; each one's fate is decided by the genuine exponential transmission law T(L)=10^(−αL/10), so it visibly fades and disappears along the way for anything beyond a modest range — and because the no-cloning theorem forbids copying an unknown quantum state, there is no way to "amplify" it back to strength the way a classical optical repeater would. The parallel repeater channel instead splits the same distance into short hops, generates entanglement independently across each one, and splices them together with entanglement-swap events at every station — never cloning the state, only combining independently-generated pairs. Tune the distance, fiber loss, repeater spacing and swap efficiency and watch the two live arrival counters diverge: the direct channel's throughput collapses exponentially with distance while the repeater channel keeps delivering, which is exactly why real long-haul quantum networks are engineered as repeater chains.

⚙ Under the hood

Explore quantum communication over long distances with direct and repeater channels. Adjust fiber loss and entanglement swap success rates to optimize signal transmission.

Three.jsno-cloning theoremquantum repeaterfiber attenuationentanglement swapping

3D · Three.js / WebGL renderer · 60 FPS target · runs fully client-side, no install

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