Title :
General entanglement-assisted quantum error-correcting codes
Author :
Brun, T.A. ; Devetak, I. ; Min-Hsiu Hsieh
Author_Institution :
Ming Hsieh Electr. Eng. Dept., Univ. of Southern California, Los Angeles, CA
Abstract :
Entanglement-assisted quantum error-correcting codes (EAQECCs) make use of pre-existing entanglement between the sender and receiver to boost the rate of transmission. It is possible to construct an EAQECC from any classical linear code, unlike standard QECCs which can only be constructed from dual-containing codes. Operator quantum error-correcting codes (OQECCs) allow certain errors to be corrected (or prevented) passively, reducing the complexity of the correction procedure. We combine these two extensions of standard quantum error correction into a unified entanglement- assisted quantum error correction formalism. This new scheme, which we call entanglement-assisted operator quantum error correction (EAOQEC), is the most general and powerful quantum error-correcting technique known, retaining the advantages of both entanglement-assistance and passive correction. We present the formalism, show the considerable freedom in constructing EAOQECCs from classical codes, and demonstrate the construction with examples.
Keywords :
error correction codes; quantum communication; quantum entanglement; classical linear code; dual-containing codes; entanglement-assistance; entanglement-assisted quantum error-correcting codes; operator quantum error-correcting codes; passive correction; Active noise reduction; Code standards; Decoding; Error correction; Error correction codes; Fault tolerance; Linear code; Parity check codes; Quantum entanglement; Quantum mechanics;
Conference_Titel :
Information Theory, 2007. ISIT 2007. IEEE International Symposium on
Conference_Location :
Nice
Print_ISBN :
978-1-4244-1397-3
DOI :
10.1109/ISIT.2007.4557160