Title :
Constructing non-binary asymmetric quantum codes via graphs
Author :
Zhi, Ma ; Riguang, Leng ; Zhengchao, Wei ; Shuqin, Zhong
Author_Institution :
State key Laboratory of Mathematical Engineering and Advanced Computing, Zhengzhou 450002, China; Zhengzhou Information Science and Technology Institute, Zhengzhou 450002, China
Abstract :
The theory of quantum error correcting codes is a primary tool for fighting decoherence and other quantum noise in quantum communication and quantum computation. Recently, the theory of quantum error correcting codes has developed rapidly and been extended to protect quantum information over asymmetric quantum channels, in which phase-shift and qubit-flip errors occur with different probabilities. In this paper, we generalize the construction of symmetric quantum codes via graphs (or matrices) to the asymmetric case, converting the construction of asymmetric quantum codes to finding matrices with some special properties. We also propose some asymmetric quantum Maximal Distance Separable (MDS) codes as examples constructed in this way.
Keywords :
Cryptography; Matrix converters; Measurement; Quantum communications; Quantum computing; Quantum mechanics; Symmetric matrices; asymmetric quantum codes; graph construction; quantum MDS codes;
Journal_Title :
Communications, China
DOI :
10.1109/CC.2013.6472857