论文标题

超越transmon阵列中的硬核玻色子

Beyond hard-core bosons in transmon arrays

论文作者

Mansikkamäki, Olli, Laine, Sami, Piltonen, Atte, Silveri, Matti

论文摘要

事实证明,透射阵列是量子信息科学和量子模拟的可行媒介。尽管它们是量子阵列的广泛流行,但除了两层近似或等效地,尚未开发的潜力尚未开发。随着较高的激发水平包括,耦合的传输自然会意识到有吸引力的玻色式模型。由于系统尺寸的希尔伯特空间的维度不佳,该模型的动力学很难研究。在这项工作中,我们提出了一个框架,用于描述基于高阶退化扰动理论的高度激发型传输状态的有效统一动力学。这使我们能够以统一,紧凑而准确的方式来描述各种集体现象,例如堆积在单个粒子的单位上,边缘 - 位置和有效的长距离相互作用。尽管为了清晰起见,我们的示例涉及一维链条的链条,但该理论可以很容易地应用于更一般的几何形状上。

Arrays of transmons have proven to be a viable medium for quantum information science and quantum simulations. Despite their widespread popularity as qubit arrays, there remains yet untapped potential beyond the two-level approximation or, equivalently, the hard-core boson model. With the higher excited levels included, coupled transmons naturally realize the attractive Bose-Hubbard model. The dynamics of the model has been difficult to study due to unfavorable scaling of the dimensionality of the Hilbert space with the system size. In this work, we present a framework for describing the effective unitary dynamics of highly-excited states of coupled transmons based on high-order degenerate perturbation theory. This allows us to describe various collective phenomena -- such as bosons stacked onto a single site behaving as a single particle, edge-localization, and effective longer-range interactions -- in a unified, compact and accurate manner. While our examples deal with one-dimensional chains of transmons for the sake of clarity, the theory can be readily applied to more general geometries.

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