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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Theoretical characterization of laser- and sympathetically-cooled ions in surface-electrode ion traps
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Theoretical characterization of laser- and sympathetically-cooled ions in surface-electrode ion traps

机译:表面电极离子阱中激光冷却和交感冷却离子的理论表征

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摘要

Using molecular dynamics simulations we characterize theoretically Coulomb clusters of laser- and sympathetically-cooled ions in a five-wire surface-electrode ion trap. We show that the asymmetry of the trapping potential leads to significantly different cluster structures and ion energy distributions in comparison to conventionally used linear Paul traps and to an asymmetric segregation of the ions in bi-component Coulomb clusters. We explore the impact of our results on the implementation of sympathetic cooling of molecular ions in surface-electrode traps and discuss possible challenges for the realization of such experiments.
机译:使用分子动力学模拟,我们从理论上表征了五线表面电极离子阱中激光冷却和同情冷却的离子的库仑簇。我们表明,与常规使用的线性Paul阱相比,俘获势的不对称性导致明显不同的簇结构和离子能量分布,并且导致双组分库仑簇中离子的不对称偏析。我们探索了结果对表面电极阱中分子离子的交感冷却的影响,并讨论了实现此类实验的可能挑战。

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