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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Ion dynamics in a linear radio-frequency trap with a single cooling laser
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Ion dynamics in a linear radio-frequency trap with a single cooling laser

机译:单个冷却激光器在线性射频阱中的离子动力学

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We analyze the possibility of cooling ions with a single laser beam, due to the coupling between the three components of their motion induced by the Coulomb interaction. For this purpose, we numerically study the dynamics of ion clouds of up to 140 particles, trapped in a linear quadrupole potential and cooled with a laser beam propagating in the radial plane. We use molecular dynamics simulations and model the laser cooling by a stochastic process. For each component of the motion, we systematically study the dependence of the temperature on the anisotropy of the trapping potential. Results obtained using the full radio-frequency (rf) potential are compared to those of the corresponding pseudopotential. In the rf case, the rotation symmetry of the potential has to be broken to keep ions inside the trap. Then, as for the pseudopotential case, we show that the efficiency of the Coulomb coupling to thermalize the components of motion depends on the geometrical configuration of the cloud. Coulomb coupling appears to be not efficient when the ions organize as a line or a pancake and the three components of motion reach the same temperature only if the cloud extends in three dimensions.
机译:由于库仑相互作用引起的运动的三个分量之间的耦合,我们分析了用单个激光束冷却离子的可能性。为此,我们通过数值研究了多达140个粒子的离子云的动力学,这些离子云被束缚在线性四极电势中并被在径向平面上传播的激光束冷却。我们使用分子动力学模拟,并通过随机过程对激光冷却进行建模。对于运动的每个组成部分,我们系统地研究温度对俘获势各向异性的依赖性。将使用全射频(rf)电势获得的结果与相应的伪电势进行比较。在射频情况下,必须打破电势的旋转对称性以将离子保留在陷阱内。然后,至于伪电势情况,我们表明库仑耦合对运动分量进行热化的效率取决于云的几何构型。当离子组织成一条线或一块薄饼并且仅当云在三个维度上延伸时,运动的三个分量达到相同的温度时,库仑耦合似乎效率不高。

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