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Good quantum error-correcting codes exist

Physical Review A · 1996 · Vol. 54(2) · pp. 1098–1105
A.R. CalderbankPeter W. Shor

Abstract

A quantum error-correcting code is defined to be a unitary mapping (encoding) of k qubits (two-state quantum systems) into a subspace of the quantum state space of n qubits such that if any t of the qubits undergo arbitrary decoherence, not necessarily independently, the resulting n qubits can be used to faithfully reconstruct the original quantum state of the k encoded qubits. Quantum error-correcting codes are shown to exist with asymptotic rate k/n=1-2${\mathit{H}}_{2}$(2t/n) where ${\mathit{H}}_{2}$(p) is the binary entropy function -p${\mathrm{log}}_{2}$p-(1-p)${\mathrm{log}}_{2}$(1-p). Upper bounds on this asymptotic rate are given. \textcopyright{} 1996 The American Physical Society.

Quantum Computing Algorithms and ArchitectureQuantum Information and CryptographyQuantum-Dot Cellular AutomataQuantum error correctionQubitMathematicsQuantum mechanicsDiscrete mathematicsQuantumPhysics
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