论文标题
PANOPTICON设备:量子光学元件的集成保罗 - 陷阱镜像系统
The Panopticon device: an integrated Paul-trap-hemispherical mirror system for quantum optics
论文作者
论文摘要
我们介绍了一种新的实验设备的设计和构建,用于将单个BA $^+$ $离子捕获到光学质量半球镜的曲率中心。我们描述了完整设置的布局,制造和集成,由高光学访问整体式`3d打印了'保罗陷阱,半球镜,一种衍射限制的效率内镜片(NA = 0.7),用于收集原子荧光和尚有态度的Art Ultra Ultra-High-High-High-High-High vacuuumel。这种新的设备可以研究量子电动力学效应,例如强抑制和增强自发发射,并以31%的单个光学模式达到发射光的收集效率。
We present the design and construction of a new experimental apparatus for the trapping of single Ba$^+$ ions in the center of curvature of an optical-quality hemispherical mirror. We describe the layout, fabrication and integration of the full setup, consisting of a high-optical access monolithic `3D-printed' Paul trap, the hemispherical mirror, a diffraction-limited in-vacuum lens (NA = 0.7) for collection of atomic fluorescence and a state-of-the art ultra-high vacuum vessel. This new apparatus enables the study of quantum electrodynamics effects such as strong inhibition and enhancement of spontaneous emission, and achieves a collection efficiency of the emitted light in a single optical mode of 31%.