On
the iterative decoding of sparse quantum codes
(pp0987-1000)
David
Poulin and Yeojin Chung
doi:
https://doi.org/10.26421/QIC8.10-8
Abstracts: We address the problem of
decoding sparse quantum error correction codes. For Pauli channels, this
task can be accomplished by a version of the belief propagation
algorithm used for decoding sparse classical codes. Quantum codes pose
two new challenges however. Firstly, their Tanner graph unavoidably
contain small loops which typically undermines the performance of belief
propagation. Secondly, sparse quantum codes are by definition highly
degenerate. The standard belief propagation algorithm does not exploit
this feature, but rather it is impaired by it. We propose heuristic
methods to improve belief propagation decoding, specifically targeted at
these two problems. While our results exhibit a clear improvement due to
the proposed heuristic methods, they also indicate that the main source
of errors in the quantum coding scheme remains in the decoding.
Key words:
Quantum error correction, sparse codes, low density
parity check codes, iterative decoding, belief propagation |