HomeQuantum PhysicsQuantum Device Fingerprint Authentication (2D)

Quantum Device Fingerprint Authentication (2D)

Interactive 2D simulator: verify a supply-chain device's quantum-state fingerprint against a reference qubit on two drag-to-rotate Bloch-circle projections, watch an intercept-resend attacker degrade the measured vector, and track live fidelity, QBER and pass/fail authentication readouts plus a round-by-round history strip.

Quantum Physics2DAdvanced60 FPS📱 Mobile-adapted⇄ 3D version
2d-quantum-supply-chain-security ↗ Open standalone

A checkpoint and a supply-chain device share a secret reference qubit state — a single point on the Bloch sphere. This simulator sends a stream of photons carrying that state across a channel to the device, lets you dial in an intercept-resend attacker and ordinary channel decoherence, and measures how far the device's returned state drifts from the reference. Because any measurement or tampering of a quantum state necessarily disturbs it, the resulting fidelity and QBER (quantum bit error rate) readouts reveal an eavesdropper or a compromised device statistically — drag the two Bloch-circle projections to rotate your view, run a verification round, and watch the measured vector, the photon stream color, the fidelity history strip and the pass/fail authentication readout respond live.

⚙ Under the hood

Verify a supply-chain device's secret quantum-state fingerprint against a reference qubit on two drag-to-rotate Bloch-circle projections, dial in an intercept-resend attacker and channel decoherence, and watch fidelity, QBER, a pass/fail authentication readout and a round-by-round history strip respond in real time.

quantum cryptographyquantum key distributionsupply chain securityBloch sphereeavesdropping detectionfidelity

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

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