| related words |
| faulttolerant |
| encoders |
| pareto |
| subcode |
| malignant |
| ashikhmin |
| equilibria |
| market |
| braiding |
| nonbinary |
| decoders |
| macwilliams |
| parrondo |
| gadget |
| codespace |
| flitney |
| hollenberg |
| enumerators |
| protecting |
| unencoded |
|
| related documents |
| An Introduction to Error-Correcting Codes: From Classical to Quantum [0602157v1] |
| Efficient Quantum Circuits for Non-Qubit Quantum Error-Correcting Codes [0211014v1] |
| Quantum error correction in the presence of spontaneous emission [9603022v2] |
| Quantum error-correcting codes associated with graphs [0012111v1] |
| Analog quantum error correction [9711021v1] |
| Fault-tolerant quantum computation [9712048v1] |
| Continuous Error Correction [9707049v1] |
| On the von Neumann capacity of noisy quantum channels [9609024v3] |
| How to build a 300 bit, 1 Giga-operation quantum computer [0412165v2] |
| On Quantum Fidelities and Channel Capacities [9809010v1] |
| Multiple Particle Interference and Quantum Error Correction [9601029v3] |
| Parallel Quantum Computation and Quantum Codes [9808027v1] |
| Quantum Logical Operations on Encoded Qubits [9605013v1] |
| The Minimum Distance Problem for Two-Way Entanglement Purification [0310097v4] |
| On optimal quantum codes [0312164v1] |
| Conditional generation of error syndromes in fault-tolerant error
correction [9608028v1] |
| ROM-based computation: quantum versus classical [0109016v2] |
| On the security of AlphaEta: Response to `Some attacks on quantum-based
cryptographic protocols' [0509091v3] |
| Quantum Convolutional Codes Derived From Reed-Solomon and Reed-Muller
Codes [0701037v2] |
| Quantum Stabilizer Codes and Classical Linear Codes [9612048v1] |
|
| related topics |
| {error, code, errors} |
| {qubit, qubits, gate} |
| {key, protocol, security} |
| {information, entropy, channel} |
| {algorithm, log, probability} |
| {let, theorem, proof} |
| {trap, ion, state} |
| {entanglement, phys, rev} |
| {states, state, optimal} |
| {time, decoherence, evolution} |
| {time, systems, information} |
| {state, phys, rev} |
| {vol, operators, histories} |
| {observables, space, algebra} |
| {group, space, representation} |
| {theory, mechanics, state} |
| {alice, bob, state} |
| {energy, gaussian, time} |
| {operator, operators, space} |
| {force, casimir, field} |
|