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Quantum Error Correction beyond the Bounded Distance Decoding Limit (1007.1778v2)

Published 11 Jul 2010 in cs.IT, math.IT, and quant-ph

Abstract: In this paper, we consider quantum error correction over depolarizing channels with non-binary low-density parity-check codes defined over Galois field of size $2p$. The proposed quantum error correcting codes are based on the binary quasi-cyclic CSS (Calderbank, Shor and Steane) codes. The resulting quantum codes outperform the best known quantum codes and surpass the performance limit of the bounded distance decoder. By increasing the size of the underlying Galois field, i.e., $2p$, the error floors are considerably improved.

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Authors (4)
  1. Kenta Kasai (39 papers)
  2. Manabu Hagiwara (19 papers)
  3. Hideki Imai (9 papers)
  4. Kohichi Sakaniwa (23 papers)
Citations (49)

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