数据驱动的结构诊断与复杂光学系统自主对准
Data-driven structural diagnostics and autonomous alignment of complex optical systems
浏览论文内容
中文总结 AI 辅助
针对复杂自由空间光学系统的自主对准问题,本文提出基于高精细度腔探针的数据驱动诊断与闭环控制框架,实现数十秒内冷启动收敛,为大规模量子处理器提供快速可扩展的维护方案。
中文摘要 AI 辅助
大型中性原子量子处理器对复杂自由空间光学系统的自主对准与维护需求日益迫切。利用高精细度光学腔作为灵敏探针,我们提出了一种用于结构诊断和闭环控制的数据驱动框架,可在数十秒内实现冷启动收敛。这些结果建立了一种快速、可扩展的诊断-控制方法,用于复杂自由空间光学架构的自主对准和持续维护。
英文摘要
The quest for autonomous alignment and maintenance of complex free-space optical systems is increasingly urgent for large-scale neutral-atom quantum processors. Leveraging a high-finesse optical cavity as a sensitive probe, we introduce a data-driven framework for structural diagnostics and closed-loop control that achieves cold-start convergence within tens of seconds. These results establish a rapid, scalable diagnostic-control methodology for autonomous alignment and continuous maintenance of complex free-space optical architectures.
发表机构
- Hong Kong University of Science and Technology (Guangzhou)(香港科技大学(广州))
- Southern University of Science and Technology(南方科技大学)
- Quantum Science Center of Guangdong-Hong Kong-Macau Greater Bay Area(粤港澳大湾区量子科学中心)
机构由 AI 辅助整理,请以论文原文为准。