Staging of RF-accelerating Units in a MEMS-based Ion Accelerator

A. Persaud , P.A. Seidl , Q. Ji , E. Feinberg , W.L. Waldron , T. Schenkel , S. Ardanuc , K.B. Vinayakumar , A. Lal
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引用次数: 4

Abstract

Multiple Electrostatic Quadrupole Array Linear Accelerators (MEQALACs) provide an opportunity to realize compact radio- frequency (RF) accelerator structures that can deliver very high beam currents. MEQALACs have been previously realized with acceleration gap distances and beam aperture sizes of the order of centimeters. Through advances in Micro-Electro-Mechanical Systems (MEMS) fabrication, MEQALACs can now be scaled down to the sub-millimeter regime and batch processed on wafer substrates. In this paper we show first results from using three RF stages in a compact MEMS-based ion accelerator. The results presented show proof-of-concept with accelerator structures formed from printed circuit boards using a 3 × 3 beamlet arrangement and noble gas ions at 10 keV. We present a simple model to describe the measured results. We also discuss some of the scaling behaviour of a compact MEQALAC. The MEMS-based approach enables a low-cost, highly versatile accelerator covering a wide range of currents (10 μA to 100 mA) and beam energies (100 keV to several MeV). Applications include ion-beam analysis, mass spectrometry, materials processing, and at very high beam powers, plasma heating.

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基于mems的离子加速器中射频加速单元的分段
多静电四极阵列线性加速器(MEQALACs)提供了一个机会,实现紧凑的射频(RF)加速器结构,可以提供非常高的光束电流。meqalac以前已经实现了加速度间隙距离和光束孔径大小为厘米数量级。通过微机电系统(MEMS)制造的进步,meqalac现在可以缩小到亚毫米范围,并在晶圆基板上批量加工。在本文中,我们展示了在紧凑型mems离子加速器中使用三个射频级的初步结果。结果表明,利用3 × 3束流排列和10 keV惰性气体离子在印刷电路板上形成的加速器结构的概念验证。我们提出了一个简单的模型来描述测量结果。我们还讨论了紧凑MEQALAC的一些标度行为。基于mems的方法实现了低成本,高度通用的加速器,涵盖了广泛的电流(10 μA至100 mA)和光束能量(100 keV至几MeV)。应用包括离子束分析,质谱分析,材料处理,以及在非常高的光束功率下,等离子体加热。
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