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Bosonic quantum codes for amplitude damping

作者:Isaac L. Chuang, Debbie Leung, Y. Yamamoto · 发表于:Physical Review A · 年份:1997 · DOI:10.1103/physreva.56.1114 · 被引用次数:223 · 研究领域:Quantum Computing Algorithms and Architecture、Quantum Information and Cryptography、Quantum Mechanics and Applications

Traditional quantum error correction involves the redundant encoding of $k$ quantum bits using $n$ quantum bits to allow the detection and correction of any $t$ bit error. The smallest general $t=1$ code requires $n=5$ for $k=1$. However, the dominant error process in a physical system is often well known, thus inviting the following question: Given a specific error model, can more efficient codes be devised? We demonstrate alternative codes that correct just amplitude damping errors that allow, for example, a $t=1$, $k=1$ code using effectively $n=4.6$. Our scheme is based on using bosonic states of photons in a finite number of optical modes. We present necessary and sufficient conditions for the codes and describe construction algorithms, physical implementation, and performance bounds.