HomeQuantum ComputingNo-Signaling Theorem: Correlation Curve & Bit-Stream View

No-Signaling Theorem: Correlation Curve & Bit-Stream View

Watch the same entangled-pair experiment as a 2D correlation-vs-angle plot and a pair of scrolling bit-stream lanes. Alice hammers her analyzer through a message pattern; her lane visibly carries it, Bob's stays a flat 50/50 coin flip, while the accumulating scatter plot locks onto the quantum curve E(Δθ) = −cos(Δθ) exactly where the no-signaling theorem says it must.

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The same entangled-pair experiment as the 3D lab version, redrawn as two native 2D data views instead of a scene you fly a camera around. A binned scatter plot accumulates the measured correlation E(A,B) against the angle difference Δθ = θB − θA and locks onto the quantum prediction −cos(Δθ) as pairs pile up bin by bin. Beside it, two scrolling strip-chart lanes trace Alice's analyzer setting and Bob's raw ±1 outcomes side by side in real time — hit "try to send 1011" and watch Alice's lane carry the bit pattern in plain sight while Bob's lane stays indistinguishable from a fair coin, exactly as the no-signaling theorem requires.

⚙ Under the hood

Two 2D data views of the same entangled-pair experiment: a scatter plot bins every sampled pair by the analyzer angle difference Δθ and locks onto the quantum correlation curve E(A,B) = −cos(Δθ), while a pair of scrolling strip-chart lanes trace Alice's analyzer setting beside Bob's raw ±1 outcomes in real time. Hit "try to send 1011" and watch Alice's lane visibly carry the bit pattern while Bob's lane stays a flat 50/50 coin flip — the no-signaling theorem made visible as data rather than as particles crossing a 3D stage.

quantum-entanglementno-signaling-theorembell-testquantum-computingcorrelation-plotprobabilitydata-visualization

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

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