Interpolation of Quantum Polar Codes and Quantum Reed-Muller Codes
May 28, 2025 Β· Declared Dead Β· π Information Theory Workshop
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Authors
Keita Hidaka, Dina Abdelhadi, Ruediger Urbanke
arXiv ID
2505.22142
Category
quant-ph: Quantum Computing
Cross-listed
cs.IT
Citations
0
Venue
Information Theory Workshop
Last Checked
5 months ago
Abstract
Good quantum error-correcting codes that fulfill practical considerations, such as simple encoding circuits and efficient decoders, are essential for functional quantum information processing systems. Quantum polar codes satisfy some of these requirements but lack certain critical features, thereby hindering their widespread use. Existing constructions either require entanglement assistance to produce valid quantum codes, suffer from poor finite-size performance, or fail to tailor polar codes to the underlying channel properties. Meanwhile, quantum Reed-Muller (RM) codes demonstrate strong performance, though no known efficient decoding algorithm exists for them. In this work, we propose strategies to interpolate between quantum polar codes and quantum RM codes, thus addressing the challenges of designing valid quantum polar codes without entanglement assistance and improving finite-size code performance.
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