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Walsh-synthesized noise filters for quantum logic

机译:沃尔什(Walsh)合成的用于量子逻辑的噪声滤波器

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Abstract We study a novel class of open-loop control protocols constructed to perform arbitrary nontrivial single-qubit logic operations robust against time-dependent non-Markovian noise. Amplitude and phase modulation protocols are crafted leveraging insights from functional synthesis and the basis set of Walsh functions. We employ the experimentally validated generalized filter-transfer function formalism in order to find optimized control protocols for target operations in SU(2) by defining a cost function for the filter-transfer function to be minimized through the applied modulation. Our work details the various techniques by which we define and then optimize the filter-synthesis process in the Walsh basis, including the definition of specific analytic design rules which serve to efficiently constrain the available synthesis space. This approach yields modulated-gate constructions consisting of chains of discrete pulse-segments of arbitrary form, whose modulation envelopes possess intrinsic compatibility with digital logic and clocking. We derive novel families of Walsh-modulated noise filters designed to suppress dephasing and coherent amplitude-damping noise, and describe how well-known sequences derived in NMR also fall within the Walsh-synthesis framework. Finally, our work considers the effects of realistic experimental constraints such as limited modulation bandwidth on achievable filter performance.
机译:摘要我们研究了一类新颖的开环控制协议,该协议构造为执行对时间相关的非马尔可夫噪声具有鲁棒性的任意非平凡单量子位逻辑运算。振幅和相位调制协议是根据功能综合和Walsh功能的基础集而设计的。为了确定SU(2)中目标操作的优化控制协议,我们采用了经过实验验证的广义滤波器传递函数形式,以通过为应用传递函数定义最小化滤波器传递函数的代价函数来找到最优控制协议。我们的工作详细介绍了在Walsh基础上定义和优化滤波器合成过程的各种技术,包括特定分析设计规则的定义,这些规则可有效限制可用的合成空间。这种方法产生了调制门结构,该结构由任意形式的离散脉冲段链组成,其调制包络具有与数字逻辑和时钟的固有兼容性。我们推导了旨在抑制相移和相干振幅阻尼噪声的新颖的沃尔什调制噪声滤波器系列,并描述了在NMR中得出的众所周知的序列也属于沃尔什合成框架的情况。最后,我们的工作考虑了实际实验约束的影响,例如有限的调制带宽对可实现的滤波器性能的影响。

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