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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >An accurate Rb density measurement method for a plasma wakefield accelerator experiment using a novel Rb reservoir
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An accurate Rb density measurement method for a plasma wakefield accelerator experiment using a novel Rb reservoir

机译:使用新型Rb储层的等离子流场加速器实验的精确Rb密度测量方法

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A method to accurately measure the density of Rb vapor is described. We plan on using this method for the Advanced Wakefield (AWAKE) (Assmann et al., 2014) project at CERN , which will be the world's first proton driven plasma wakefield experiment The method is similar to the hook (Marlow, 1967) method and has been described in great detail in the work by Hill et al. (1986). In this method a cosine fit is applied to the interferogram to obtain a relative accuracy on the order of 1% for the vapor density-length product. A single-mode, fiber-based, Mach-Zenhder interferometer will be built and used near the ends of the 10 meter-long AWAKE plasma source to be able to make accurate relative density measurement between these two locations. This can then be used to infer the vapor density gradient along the AWAKE plasma source and also change it to the value desired for the plasma wakefield experiment. Here we describe the plan in detail and show preliminary results obtained using a prototype 8 cm long novel Rb vapor cell.
机译:描述了一种精确测量Rb蒸气密度的方法。我们计划在CERN的Advanced Wakefield(AWAKE)(Assmann et al。,2014)项目中使用此方法,这将是世界上第一个质子驱动的等离子体Wakefield实验。该方法类似于hook(Marlow,1967)方法,并且Hill等人的工作对此进行了详细描述。 (1986)。在这种方法中,将余弦拟合应用于干涉图,以获得蒸气密度-长度乘积的大约1%的相对精度。将建立一个基于光纤的单模Mach-Zenhder干涉仪,并在10米长AWAKE等离子源的末端附近使用它,以便能够在这两个位置之间进行精确的相对密度测量。然后可将其用于推断沿AWAKE等离子体源的蒸气密度梯度,并将其更改为等离子体尾场实验所需的值。在这里,我们详细描述了该计划,并显示了使用原型8厘米长的新型Rb蒸汽电池获得的初步结果。

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