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Robustness against parametric noise of nonideal holonomic gates

机译:非理想完整门抗参数噪声的鲁棒性

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Holonomic gates for quantum computation are commonly considered to be robust against certain kinds of parametric noise, the cause of this robustness being the geometric character of the transformation achieved in the adiabatic limit. On the other hand, the effects of decoherence are expected to become more and more relevant when the adiabatic limit is approached. Starting from the system described by Florio [Phys. Rev. A 73, 022327 (2006)], here we discuss the behavior of nonideal holonomic gates at finite operational time, i.e., long before the adiabatic limit is reached. We have considered several models of parametric noise and studied the robustness of finite-time gates. The results obtained suggest that the finite-time gates present some effects of cancellation of the perturbations introduced by the noise which mimic the geometrical cancellation effect of standard holonomic gates. Nevertheless, a careful analysis of the results leads to the conclusion that these effects are related to a dynamical instead of a geometrical feature.
机译:通常认为,用于量子计算的完整门对某些类型的参数噪声具有鲁棒性,这种鲁棒性的原因是在绝热极限中实现的变换的几何特征。另一方面,当达到绝热极限时,去相干的影响将变得越来越重要。从Florio [Phys。 Rev. A 73,022327(2006)],我们在这里讨论非理想的完整门在有限的操作时间,即在达到绝热极限之前很久的行为。我们考虑了几种参数噪声模型,并研究了有限时间门的鲁棒性。所获得的结果表明,有限时门呈现出一些抵消由噪声引入的扰动的效果,这些噪声模仿了标准完整门的几何抵消作用。但是,仔细分析结果会得出结论,这些影响与动态特征有关,而不与几何特征有关。

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