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A comparison of ion beam measurements by retarding field energy analyzer and laser induced fluorescence in helicon plasma devices

机译:减速场能量分析仪与激光诱导的荧光在等离子体设备中进行离子束测量的比较

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摘要

Both Laser-Induced Fluorescence (LIF) and Retarding Field Energy Analyzers (RFEA) have been applied to the investigation of beams formed in inductively coupled helicon plasmas. While the LIF technique provides a direct measurement of the velocity distribution in the plasma, the RFEA measures ion flux as a function of a retarding potential. In this paper, we present a method to compare the two techniques, by converting the LIF velocity distribution to an equivalent of a RFEA measurement. We applied this method to compare new LIF and RFEA measurements in two different experiments; the Hot Helicon Experiment (HELIX) - Large Experiment on Instabilities and Anisotropies (LEIA) at West Virginia University and Njord at University of Tromso. We find good agreement between beam energies of the two methods. In agreement with earlier observations, the RFEA is found to measure ion beams with densities too low for the LIF to resolve. In addition, we present measurements of the axial development of the ion beam in both experiments. Beam densities drop exponentially with distance from the source, both in LIF and RFEA measurements. The effective quenching cross section from LIF in LEIA is found to be sigma(b,*) = 4 x 10(-19) m(2), and the effective beam collisional cross sections by RFEA in Njord to be sigma(b) = 1.7 x 10(-1)8 m(2). (C) 2015 AIP Publishing LLC.
机译:激光诱导荧光(LIF)和减速场能量分析仪(RFEA)均已用于研究在电感耦合螺旋等离子体中形成的光束。 LIF技术可以直接测量等离子体中的速度分布,而RFEA可以测量离子通量,它是阻滞电位的函数。在本文中,我们提出了一种通过将LIF速度分布转换为等效RFEA测量值来比较这两种技术的方法。我们使用此方法在两个不同的实验中比较了新的LIF和RFEA测量值。热螺旋实验(HELIX)-西弗吉尼亚大学和特罗姆瑟大学的Njord的大型不稳定性和各向异性实验(LEIA)。我们发现两种方法的束能量之间有很好的一致性。与早期的观察结果一致,发现RFEA可以测量密度太低而LIF无法分辨的离子束。另外,我们在两个实验中都给出了离子束轴向展开的测量结果。在LIF和RFEA测量中,光束密度都会随着距光源的距离呈指数下降。发现LEIA中LIF的有效淬火截面为sigma(b,*)= 4 x 10(-19)m(2),RFEA在Njord中的有效光束碰撞截面为sigma(b)= 1.7 x 10(-1)8毫米(2)。 (C)2015 AIP Publishing LLC。

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