论文标题
解决微波穿衣的弱肛门超导乘量子的非扰动重新归一化
Resolving non-perturbative renormalization of a microwave-dressed weakly anharmonic superconducting qubit
论文作者
论文摘要
微波驾驶是一种无处不在的超导QUB(SCQ)的技术,但是基于常规使用的扰动理论的穿着状态描述无法完全捕获强驱动限制中的动力学。不幸的是,这些近似值超出了这些适用于基于Transmon的电路量子电动力学(QED)系统的综合研究,因为相关工作主要限于单模或两态系统。在这项工作中,我们研究了在广泛的驱动参数上耦合到单个量化模式的微波式transmon。我们透露,在强驾驶极限中,跨对与谐振器以及每种模式的性质之间的相互作用显着重新归一化。与以前的理论作品不同,我们在扰动方案之外建立了一种非恢复性和非浮动理论,该理论可以很好地量化实验。这项工作扩大了我们对穿着腔的QED Q型系统的基本理解,而不是传统的近似值。我们的工作还将有助于快速量子门实施,量子参数工程以及对驱动的非线性系统的基本研究。
Microwave driving is a ubiquitous technique for superconducting qubits (SCQs), but the dressed states description based on the conventionally used perturbation theory cannot fully capture the dynamics in the strong driving limit. Comprehensive studies beyond these approximations applicable to transmon-based circuit quantum electrodynamics (QED) systems are unfortunately rare as the relevant works have been mainly limited to single-mode or two-state systems. In this work, we investigate a microwave-dressed transmon coupled to a single quantized mode over a wide range of driving parameters. We reveal that the interaction between the transmon and resonator as well as the properties of each mode is significantly renormalized in the strong driving limit. Unlike previous theoretical works, we establish a non-recursive, and non-Floquet theory beyond the perturbative regimes, which excellently quantifies the experiments. This work expands our fundamental understanding of dressed cavity QED-like systems beyond the conventional approximations. Our work will also contribute to fast quantum gate implementation, qubit parameter engineering, and fundamental studies on driven nonlinear systems.