论文标题
多模电路QED的无缝高Q微波腔
Seamless high-Q microwave cavities for multimode circuit QED
论文作者
论文摘要
多模腔量子电动力学---两级系统与许多腔模式同时交互 - - 提供了用于量子信息处理和量子光学器件的多功能框架。由于长相干时间和较大的相互作用强度的组合,腔QED的领先实验平台之一是将超导电路耦合到3D微波腔。在这项工作中,我们实现了一个3D多模QED系统,其单光子寿命为$ 2 $ MS,合作性为$ 0.5-1.5 \ times10^9 $,跨9个新颖的无缝腔。我们仅使用单个驱动线来演示适用于所有空腔模式的通用单模量子控制的多种协议。我们通过开发一种直接的长笛方法来实现这一目标,以创建单层超导型微波腔,从而减少损失,同时允许控制模式频谱和模式 - 问题相互作用。我们通过使用该技术制造各种3D腔几何形状来强调该技术的灵活性和易于实现,从而为工程多模量子系统提供了具有异常低耗散的工程多模量子系统的模板。这项工作是实现硬件有效的随机访问量子记忆和处理器的重要一步,以及使用光子探索量子多体物理学。
Multimode cavity quantum electrodynamics ---where a two-level system interacts simultaneously with many cavity modes---provides a versatile framework for quantum information processing and quantum optics. Due to the combination of long coherence times and large interaction strengths, one of the leading experimental platforms for cavity QED involves coupling a superconducting circuit to a 3D microwave cavity. In this work, we realize a 3D multimode circuit QED system with single photon lifetimes of $2$ ms and cooperativities of $0.5-1.5\times10^9$ across 9 modes of a novel seamless cavity. We demonstrate a variety of protocols for universal single-mode quantum control applicable across all cavity modes, using only a single drive line. We achieve this by developing a straightforward flute method for creating monolithic superconducting microwave cavities that reduces loss while simultaneously allowing control of the mode spectrum and mode-qubit interaction. We highlight the flexibility and ease of implementation of this technique by using it to fabricate a variety of 3D cavity geometries, providing a template for engineering multimode quantum systems with exceptionally low dissipation. This work is an important step towards realizing hardware efficient random access quantum memories and processors, and for exploring quantum many-body physics with photons.