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Determination of hydrogen cluster velocities and comparison with numerical calculations

机译:氢团速度的测定及其与数值计算的比较

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The use of powerful hydrogen cluster jet targets in storage ring experiments led to the need of precise data on the mean cluster velocity as function of the stagnation temperature and pressure for the determination of the volume density of the target beams. For this purpose a large data set of hydrogen cluster velocity distributions and mean velocities was measured at a high density hydrogen cluster jet target using a trumpet shaped nozzle. The measurements have been performed at pressures above and below the critical pressure and for a broad range of temperatures relevant for target operation, e.g., at storage ring experiments. The used experimental method is described which allows for the velocity measurement of single clusters using a time-of-flight technique. Since this method is rather time-consuming and these measurements are typically interfering negatively with storage ring experiments, a method for a precise calculation of these mean velocities was needed. For this, the determined mean cluster velocities are compared with model calculations based on an isentropic one-dimensional van der Waals gas. Based on the obtained data and the presented numerical calculations, a new method has been developed which allows to predict the mean cluster velocities with an accuracy of about 5%. For this two cut-off parameters defining positions inside the nozzle are introduced, which can be determined for a given nozzle by only two velocity measurements.
机译:在存储环实验中使用强大的氢簇射流靶标,需要精确的平均簇速数据作为停滞温度和压力的函数,以确定靶束的体积密度。为此,使用喇叭形喷嘴在高密度氢簇射流靶上测量了大的氢簇速度分布和平均速度数据集。测量是在高于和低于临界压力的压力下以及在与目标操作相关的宽范围温度下进行的,例如在存储环实验中。描述了使用的实验方法,该方法允许使用飞行时间技术测量单个星团的速度。由于此方法非常耗时,并且这些测量通常会对存储环实验产生负面影响,因此需要一种用于精确计算这些平均速度的方法。为此,将确定的平均簇速度与基于等熵一维范德华气体的模型计算进行比较。基于获得的数据和提出的数值计算,已经开发了一种新方法,该方法可以预测平均簇速度,其精度约为5%。为此,引入了定义喷嘴内部位置的两个截止参数,可以通过仅两次速度测量来确定给定喷嘴的位置。

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