Stabilizer subsystem codes with spatially local generators

S. Bravyi
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引用次数: 4

Abstract

We derive new tradeoffs for reliable quantum information storage in a 2D local architecture based on subsystem quantum codes. Our results apply to stabilizer subsystem codes, that is, stabilizer codes in which part of the logical qubits does not encode any information. A stabilizer subsystem code can be specified by its gauge group — a subgroup of the Pauli group that includes the stabilizers and the logical operators on the unused logical qubits. We assume that the physical qubits are arranged on a two-dimensional grid and the gauge group has spatially local generators such that each generator acts only on a few qubits located close to each other. Our main result is an upper bound kd = O(n), where k is the number of encoded qubits, d is the minimal distance, and n is the number of physical qubits. In the special case when both gauge group and the stabilizer group have spatially local generators, we derive a stronger bound kd2 = O(n) which is tight up to a constant factor.
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具有空间局部生成器的稳定器子系统代码
在基于子系统量子码的二维局部架构中,我们得到了可靠的量子信息存储的新权衡。我们的结果适用于稳定器子系统代码,即部分逻辑量子位不编码任何信息的稳定器代码。稳定器子系统代码可以由它的规范群来指定——规范群是泡利群的一个子群,包括稳定器和未使用的逻辑量子位上的逻辑算子。我们假设物理量子位排列在二维网格上,规范群具有空间局部发生器,使得每个发生器仅作用于彼此靠近的几个量子位。我们的主要结果是一个上界kd = O(n),其中k是编码量子比特的数量,d是最小距离,n是物理量子比特的数量。在规范群和稳定群都有空间局部发生器的特殊情况下,我们得到了一个更强的界kd2 = O(n),它紧致于一个常数因子。
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