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Modeling state-selective photodetachment in cold ion traps: Rotational state 'crowding' in small anions

机译:在冷离子陷阱中建模状态选择性光散热:小阴离子的旋转状态“拥挤”

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Using accurate ab initio calculations of the interaction forces, we employ a quantum mechanical description of the collisional state-changing processes that occur in a cold ion trap with He as a buffer gas. We generate the corresponding inelastic rates for rotational transitions involving three simple molecular anions OH-((1)Sigma), MgH-((1)Sigma), and C2H-((1)Sigma) colliding with the helium atoms of the trap. We show that the rotational constants of these molecular anions are such that within the low-temperature regimes of a cold ion trap (up to about 50 K), a different proportion of molecular states are significantly populated when loading helium as a buffer gas in the trap. By varying the trap operating conditions, population equilibrium at the relevant range of temperatures is reached within different time scales. In the modeling of the photodetachment experiments, we analyze the effects of varying the chosen values for photodetachment rates as well as the laser photon fluxes. Additionally, the changing of the collision dynamics under different buffer gas densities is examined and the best operating conditions, for the different anions, for yielding higher populations of specific rotational states within the ion traps are extracted. The present modeling thus illustrates possible preparation of the trap conditions for carrying out more efficiently state-selected experiments with the trapped anions. (C) 2019 Author(s).
机译:使用相互作用力的精确AB初始计算,我们采用难以发生在冷离子阱中的碰撞状态改变过程的量子力学描述,作为缓冲气体。我们产生诸如涉及三种简单的分子阴离子OH - ((1)Σ),MGH - (1)Σ)和C 2 H - ((1)Σ)与疏水阀的氦原子碰撞的旋转过渡的相应非弹性速率。我们表明,这些分子阴离子的旋转常数使得在冷离子阱(高达约50k)的低温方案内,在将氦作为缓冲气体加载氦气时,显着填充不同比例的分子状态。陷阱。通过改变陷阱操作条件,在不同的时间尺度内达到了相关温度范围内的群体平衡。在光致沉积实验的建模中,我们分析了对光电偶然率和激光光子通量的改变所选择的值的影响。另外,研究了在不同缓冲气体密度下进行碰撞动力学的改变,并且提取用于不同阴离子的最佳操作条件,用于在离子阱内产生更高的特定旋转状态群体。因此,本建模示出了用于将更有效的状态所选择的实验与捕获的阴离子进行更有效的状态的捕集条件的可能制备。 (c)2019年作者。

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