通过优化三级系统中的短脉冲序列实现高保真量子门

Cheng Zhang, Yang Liu, Jie Song, Yan Xia, Z. Shi
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引用次数: 0

摘要

我们提出了一种稳健的高保真方案,通过优化三层系统中的短脉冲序列来实现通用量子门。为了减轻对误差的敏感性,我们重新组合了误差矩阵的所有元素,构建了一个包含三种权重因子的成本函数。通过寻找该成本函数的最小值来获得调制参数。引入权重因子的目的是减少高阶误差矩阵的不利影响,抑制向第三态的群体泄漏,纠正量子比特空间的运算误差,以及优化短脉冲序列的总脉冲面积。结果表明,优化后的序列对误差具有很强的鲁棒性,并有效减少了总脉冲面积。因此,这项工作为实现量子计算的超强鲁棒性和高速度提供了一种有价值的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High-fidelity quantum gates via optimizing short pulse sequences in three-level systems
We propose a robust and high-fidelity scheme for realizing universal quantum gates by optimizing short pulse sequences in a three-level system. To alleviate the sensitivity to the errors, we recombine all elements of error matrices to construct a cost function with three types of weight factors. The modulation parameters are obtained by searching for the minimum value of this cost function. The purposes of introducing the weight factors are to reduce the detrimental impact of high-order error matrices, suppress population leakage to the third state, correct the operational error in the qubit space, and optimize the total pulse area of short pulse sequences. The results demonstrate that the optimized sequences exhibit strong robustness against errors and effectively reduce the total pulse area. Therefore, this work presents a valuable method for achieving exceptional robustness and high speed in quantum computations.
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