Title :
Channel identification and its impact on quantum LDPC code performance
Author :
Xie, Yixuan ; Li, Jun ; Malaney, Robert ; Yuan, Jinhong
Author_Institution :
Sch. of Electr. Eng. & Telecommun., Univ. of New South Wales, Sydney, NSW, Australia
fDate :
Jan. 30 2012-Feb. 2 2012
Abstract :
In this work we probe the impact of channel estimation on the performance of quantum LDPC codes. Our channel estimation is based on an optimal estimate of the relevant decoherence parameter via its quantum Fisher information. Using state-of-the art quantum LDPC codes designed for the quantum depolarization channel, and utilizing various quantum probes with different entanglement properties, we show how the performance of such codes can deteriorate by an order of magnitude when optimal channel identification is fed into a belief propagation decoding algorithm. Our work highlights the importance in quantum communications of a viable channel identification campaign prior to decoding, and highlights the trade-off between entanglement consumption and quantum LDPC code performance.
Keywords :
channel estimation; decoding; parity check codes; quantum communication; quantum entanglement; belief propagation decoding algorithm; channel estimation; decoherence parameter; entanglement property; optimal channel identification; optimal estimation; quantum Fisher information; quantum LDPC code performance; quantum communication; quantum depolarization channel; quantum error correction code; viable channel identification campaign; Channel estimation; Decoding; Error analysis; Error correction codes; Parity check codes; Probes; Quantum entanglement;
Conference_Titel :
Communications Theory Workshop (AusCTW), 2012 Australian
Conference_Location :
Wellington
Print_ISBN :
978-1-4577-1961-5
DOI :
10.1109/AusCTW.2012.6164921