HomeQuantum PhysicsQuantum Digital Signatures: Coherent-State Forgery Resistance

Quantum Digital Signatures

Interactive 3D simulator of quantum digital signatures: coherent-state phase-space clouds, unambiguous state discrimination, and the exponential forgery bound e^(-2|alpha|^2*L) that makes a quantum-signed message unforgeable.

Quantum Physics3DAdvanced60 FPS📱 Mobile-adapted
quantum-information-science ↗ Open standalone

Quantum digital signatures let a sender authenticate a classical message so that a forger — even one with unlimited computing power — cannot alter it undetected, using non-orthogonal coherent states in place of a trusted mathematical hardness assumption. This simulator renders the two public-key phase-space clouds |α⟩ and |−α⟩ as scattered 3D point clouds sized by real quantum shot noise, runs unambiguous state discrimination on simulated verification copies, and tracks how the state overlap s = e^(−2|α|²) and copy count L combine into an exponential forgery bound s^L — watch an honest verification settle near the overlap rate while a forger's attempt collapses as L grows.

⚙ Under the hood

Sign a classical bit with non-orthogonal coherent-state public keys and watch unambiguous state discrimination make forgery fail exponentially as the number of verification copies grows.

quantum informationquantum cryptographycoherent statesunambiguous state discriminationdigital signatures

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

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