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Focusing properties of a very thin electrostatic quadrupole lens

机译:聚焦静电四极镜头的重点

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The rainbow effect in transmission of a proton beam of energy of 10 keV through a very thin electrostatic quadrupole lens is considered theoretically. The incident ion velocity vectors are taken to be parallel to the lens axis. The distance between the positively or negatively charged lens electrodes is 10 mm and the electrode voltage modulus is 1 kV. The approach is based on the momentum approximation. The rainbow effect is studied via a detailed analysis of the ion differential transmission cross-section, which is determined by the Jacobian of the ion transmission angle components. This variable contains a term describing the ion deflection from the individual electrodes and a term describing the coupling of the electrodes that is seen by the ion. It has been found that the latter term is the source of the rainbow effect, which is, thus, a complex effect in ion beam dynamics. The final conclusion of the calculations is that the lens acts on the ion beam in a way to reshape it qualitatively into a beam containing four narrow sub-beams directed between the lens electrodes.
机译:通过非常薄的静电四极镜透镜在10kev的质子能量中传输的彩虹效应是理论上的。入射离子速度向量被用来平行于透镜轴。正电压或带负电镜头电极之间的距离为10mm,电极电压模量为1kV。该方法基于势头近似。通过对离子差分传动横截面的详细分析研究彩虹效应,其由离子传递角分量的雅各斯确定。该变量包含描述来自各个电极的离子偏转的术语和描述由离子观察的电极的耦合的术语。已经发现,后者项是彩虹效应的来源,从而是离子束动力学中的复杂效果。计算的最终结论是,镜片以定性地将其标记为离子束,以定性地将其重新成重合到包含在透镜电极之间的四个窄子梁的光束上。

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