论文标题

直接观察线性保罗陷阱中的离子微功能

Direct Observation of Ion Micromotion in a Linear Paul Trap

论文作者

Zhukas, Liudmila A., Millican, Maverick J., Svihra, Peter, Nomerotski, Andrei, Blinov, Boris B.

论文摘要

在本文中,讨论了激光冷却的离子晶体中多个离子的微动去的直接观察以及一种新颖的微功能振幅测量技术。使用时间分辨的单光子敏感摄像机直接观察到微型动力,该相机在纳秒时间尺度上为每个离子提供荧光和位置数据。测量了晶体中每个离子的微功能振幅和相位,从而使该方法对线性陷阱中射频四极杆势的偏见和离子链的偏移敏感。空间分辨率使得该微动检测技术适用于复杂的离子构型,包括二维几何形状。它不需要任何其他设备或激光束,并且像其他方法一样,冷却激光器或陷阱电压的调节不需要。

In this paper, direct observation of micromotion for multiple ions in a laser-cooled trapped ion crystal is discussed along with a novel measurement technique for micromotion amplitude. Micromotion is directly observed using a time-resolving, single-photon sensitive camera that provides both fluorescence and position data for each ion on the nanosecond time scale. Micromotion amplitude and phase for each ion in the crystal are measured, allowing this method to be sensitive to tilts and shifts of the ion chain from the null of the radiofrequency quadrupole potential in the linear trap. Spatial resolution makes this micromotion detection technique suitable for complex ion configurations, including two-dimensional geometries. It does not require any additional equipment or laser beams, and the modulation of the cooling lasers or trap voltages is not necessary for detection, as it is in other methods.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源