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Motor-driven autonomous system for controlling beamline iris diaphragm apertures

机译:用于控制光束线IRIS隔膜孔径的电动机驱动自主系统

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At the collinear apparatus for laser spectroscopy and applied sciences (COALA) at TU Darmstadt, collinear laser spectroscopy is applied to perform high-precision measurements of atomic transition frequencies and high voltages in an ultra-high vacuum beamline. In such laser spectroscopy beamlines, iris diaphragms are used to reduce ion beam divergence, and to ensure a good laser and ion beam overlap. Since the system that controls the diameter of the apertures presents strong hysteresis, an automated adjustment is desirable to enhance reproducibility in the aperture settings, and to reduce the effort in performing measurements where different diameters are required, especially in alternating collinear and anti-collinear measurements. To achieve this, theIris Moversystem was designed and implemented. The Iris Mover system consists of motor-driven iris apertures which can be easily controlled by users through a computer, and which accounts for hysteresis effects. Here, we explain the design process of the Iris Mover and demonstrate and discuss its functionality.
机译:在用于在达姆施塔特激光光谱学和应用科学(COALA)的共线装置,共线激光光谱学被施加到在超高真空束线执行原子跃迁频率和高电压的高精度测量。在这种激光光谱束线中,虹膜隔膜用于减少离子束发散,并确保良好的激光和离子束重叠。由于控制孔径直径的系统具有强烈的滞后,因此期望自动调整以增强光圈设置中的再现性,并且可以减少执行不同直径所需的测量的努力,特别是在交替的共线和防基线测量中。为实现这一目标,他们的virtersystem是设计和实施的。 IRIS MOVER系统由电动机驱动的虹膜孔组成,可以通过计算机容易地由计算机控制,并且占滞后效应的帐户。在这里,我们解释了虹膜搬家的设计过程,并展示并讨论其功能。

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