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Magic-state distillation with low overhead

机译:低开销的魔术状态蒸馏

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摘要

We propose a family of error-detecting stabilizer codes with an encoding rate of 1/3 that permit a transversal implementation of the gate T=exp(−iπZ/8) on all logical qubits. These codes are used to construct protocols for distilling high-quality “magic” states T|+〉 by Clifford group gates and Pauli measurements. The distillation overhead scales as O(logγ(1/ε)), where ε is the output accuracy and γ=log_2(3)≈1.6. To construct the desired family of codes, we introduce the notion of a triorthogonal matrix, a binary matrix in which any pair and any triple of rows have even overlap. Any triorthogonal matrix gives rise to a stabilizer code with a transversal T gate on all logical qubits, possibly augmented by Clifford gates. A powerful numerical method for generating triorthogonal matrices is proposed. Our techniques lead to a twofold overhead reduction for distilling magic states with accuracy ε∼10^(−12) compared with previously known protocols.
机译:我们提出了一个检错稳定器代码系列,其编码速率为1/3,可在所有逻辑量子位上横向实现门T = exp(-iπZ/ 8)。这些代码用于构建用于通过Clifford群门和Pauli测量来提取高质量“魔术”状态T | +〉的协议。精馏塔顶馏出量的标度为O(logγ(1 /ε)),其中ε是输出精度,γ= log_2(3)≈1.6。为了构造所需的代码家族,我们引入了三正交矩阵的概念,这是一个二进制矩阵,其中任何对和任何三行都具有均匀的重叠。任何三正交矩阵都会在所有逻辑量子位上产生带有横向T门的稳定器代码,并可能由Clifford门进行扩展。提出了一种强大的数值生成三角矩阵的方法。与先前已知的协议相比,我们的技术导致用于以精度ε〜10 ^(-12)提取魔术状态的开销减少了两倍。

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