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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Energy-loss straggling of helium projectiles at low kinetic energies
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Energy-loss straggling of helium projectiles at low kinetic energies

机译:低动能下氦弹的能量耗散散乱

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Concentration depth profiles at liquid surfaces can be determined by means of neutral impact collision ion scattering spectroscopy. The energy resolution of the spectra is influenced by the energy loss straggling of the projectiles. Energy loss straggling is a measure of the width of the energy loss distribution of particles passing through matter. Knowledge of the energy loss straggling is especially important for determining concentration depth profiles of aqueous surfaces. Here it is shown that the energy loss in the gas phase and the energy loss distribution can be determined with a series of spectra taken at different vapor pressures of the aqueous solution. The projectiles used are 3 keV helium ions. The gas phase causes a shift of the spectra to lower energies and a broadening of the structure due to energy loss straggling. Both the energy loss in the gas phase and the energy loss straggling must be gauged in order to determine concentration depth profiles quantitatively. Knowledge of the energy loss distribution can be used to determine accurate concentration depth profiles by means of deconvolution.
机译:可以通过中性碰撞碰撞离子散射光谱法确定液体表面的浓度深度分布。光谱的能量分辨率受射弹能量散失的影响。能量损失散布是对穿过物质的颗粒能量损失分布宽度的度量。散发能量损失的知识对于确定水表面的浓度深度分布尤其重要。在此表明,可以通过在水溶液的不同蒸气压下获得的一系列光谱来确定气相中的能量损失和能量损失分布。使用的射弹是3 keV氦离子。由于能量散失,气相使光谱移动到较低的能量,并使结构变宽。气相的能量损失和散失的能量损失都必须测量,以便定量确定浓度深度分布。能量损失分布的知识可用于通过反卷积确定准确的浓度深度分布。

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