论文标题

自旋挤压GKP代码,用于原子合奏中的量子误差校正

Spin squeezed GKP codes for quantum error correction in atomic ensembles

论文作者

Omanakuttan, Sivaprasad, Volkoff, T. J.

论文摘要

GKP代码在连续变量(CV)量子系统的位移相空间梳中编码一个量子,对于纠正各种高重量光子误差非常有用。在这里,我们通过使用量子中央限制定理将CV系统的相空间结构拉回量子自旋系统的紧凑相位空间,从而提出单模CV GKP代码的原子集合类似物。我们使用多样性组合方法来计算通道保真度,研究了这些代码在误差通道和各向同性弹道置换过程中描述的这些代码的最佳恢复性能。我们发现,自旋GKP代码的表现优于其他自旋系统代码,例如CAT代码或二项式代码。我们的自旋GKP代码基于SU(2)相干状态的两轴反转相互作用和叠加是有限能量的CV GKP代码的直接自旋类似物,而基于单轴扭曲的代码尚未经过充分研究的CV模拟。提出了Spin GKP代码的实现,该代码使用了适用于CV和Spin GKP设置的Unitaries方法的线性组合。最后,我们讨论了使用旋转GKP编码量子位量子计算的易耐故障近似门集,该量子通过使用量子中央限制定理从CV GKP设置转换门来获得。

GKP codes encode a qubit in displaced phase space combs of a continuous-variable (CV) quantum system and are useful for correcting a variety of high-weight photonic errors. Here we propose atomic ensemble analogues of the single-mode CV GKP code by using the quantum central limit theorem to pull back the phase space structure of a CV system to the compact phase space of a quantum spin system. We study the optimal recovery performance of these codes under error channels described by stochastic relaxation and isotropic ballistic dephasing processes using the diversity combining approach for calculating channel fidelity. We find that the spin GKP codes outperform other spin system codes such as cat codes or binomial codes. Our spin GKP codes based on the two-axis countertwisting interaction and superpositions of SU(2) coherent states are direct spin analogues of the finite-energy CV GKP codes, whereas our codes based on one-axis twisting do not yet have well-studied CV analogues. An implementation of the spin GKP codes is proposed which uses the linear combination of unitaries method, applicable to both the CV and spin GKP settings. Finally, we discuss a fault-tolerant approximate gate set for quantum computing with spin GKP-encoded qubits, obtained by translating gates from the CV GKP setting using quantum central limit theorem.

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