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Motional studies of one and two laser-cooled trapped ions for electric-field sensing applications

机译:用于电场传感应用的一种和两个激光冷却捕获离子的运动研究

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We have studied the dynamics of one and two laser-cooled trapped Ca-40(+) ions by applying electric fields of different nature along the axial direction of the trap, namely, driving the motion with a harmonic dipolar field, or with white noise. These two types of driving induce distinct motional states of the axial modes: a coherent oscillation with the dipolar field, or an enhanced Brownian motion due to an additional contribution to the heating rate from the electric noise. In both scenarios, the sensitivity of an isolated ion and a laser-cooled two-ion crystal has been evaluated and compared. The analysis and understanding of this dynamics is important towards the implementation of a novel Penning trap mass-spectroscopy technique based on optical detection, aiming at improving precision and sensitivity.
机译:我们已经通过沿着陷阱的轴向施加不同性质的电场来研究了一个和两个激光被捕获的CA-40(+)离子的动态,即用谐波偶极场驱动运动,或用白色噪音 。 这两种类型的驱动引起轴向模式的不同运动状态:由于对来自电噪声的加热速率的额外贡献,与双极场具有相干振荡,或增强的褐色运动。 在这两种情况下,已经评估了隔离离子和激光冷却的双离子晶体的灵敏度并进行比较。 对这种动态的分析和理解对于实现基于光学检测的新型削减陷阱质谱技术非常重要,旨在提高精度和灵敏度。

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