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Energy-loss straggling of helium projectiles at low kinetic energies: Deconvolution of concentration depth profiles of inorganic salt solutes in aqueous solutions

机译:低动能下氦弹的能量耗散散布:水溶液中无机盐溶质浓度深度分布的反卷积

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Neutral impact collision ion scattering spectroscopy allows to determine concentration depth profiles. The method makes use of the energy loss of projectiles passing through matter to gain the depth information. The energy losses of the projectiles obey a statistical distribution, the energy-loss straggling. The energy-loss spectra are mainly given by the energy-loss straggling and the concentration depth profiles. Knowing the energy-loss straggling quantitatively makes it possible to deconvolute the energy-loss spectra. Here we use the Poisson distribution to describe the energy-loss straggling. The Poisson distribution and a previously developed method are used to deconvolute the energy-loss spectra of iodide of aqueous LiI solutions with concentrations between 5 and 7.2m. The iodide concentration depth profiles of these highly concentrated solutions are monotonous and do not show a local maximum near the surface.
机译:中性碰撞碰撞离子散射光谱法可以确定浓度深度曲线。该方法利用了穿过物质的弹丸的能量损失来获得深度信息。弹丸的能量损失服从统计分布,能量损失呈阶梯状。能量损失谱主要由能量损失散布图和浓度深度分布图给出。定量了解能量损耗,可以对能量损耗谱进行反卷积。在这里,我们使用泊松分布来描述散失的能量。使用泊松分布和先前开发的方法对5到7.2m浓度的LiI水溶液的碘化物的能量损失谱进行反卷积。这些高浓度溶液的碘化物浓度深度分布是单调的,在表面附近未显示出局部最大值。

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