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A dynamic magneto-optical trap for atom chips

机译:用于原子芯片的动态磁光阱

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摘要

We describe a dynamic magneto-optical trap (MOT) suitable for the use with vacuum systems in which optical access is limited to a single window. This technique facilitates the long-standing desire of producing integrated atom chips, many of which are likely to have severely restricted optical access compared with conventional vacuum chambers. This 'switching-MOT' relies on the synchronized pulsing of optical and magnetic fields at audio frequencies. The trap's beam geometry is obtained using a planar mirror surface, and does not require a patterned substrate or bulky optics inside the vacuum chamber. Central to the design is a novel magnetic field geometry that requires no external quadrupole or bias coils which leads toward a very compact system. We have implemented the trap for 85Rb and shown that it is capable of capturing 2 million atoms and directly cooling below the Doppler temperature.
机译:我们描述了一种动态磁光阱(MOT),适用于将光学访问限制在单个窗口中的真空系统。这种技术促进了人们对生产集成原子芯片的长期需求,与常规真空室相比,集成原子芯片中的许多原子芯片可能会受到严格的光学限制。这种“开关-MOT”依赖于音频处的光和磁场的同步脉冲。捕集阱的光束几何形状是使用平面镜表面获得的,不需要在真空室内部放置有图案的基板或笨重的光学元件。该设计的核心是新颖的磁场几何形状,不需要外部四极或偏置线圈,这可以导致非常紧凑的系统。我们已经针对85Rb实施了陷阱,并表明它能够捕获200万个原子并直接冷却到多普勒温度以下。

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