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等离子体平均自由程的标定实验方法。

An experimental method for calibration of the plasmon mean free path.

机构信息

Department of Materials Engineering, Technion - Israel Institute of Technology, Haifa 32000, Israel.

出版信息

J Microsc. 2009 Dec;236(3):165-73. doi: 10.1111/j.1365-2818.2009.03214.x.

Abstract

Transmission electron microscopy specimens in the form of elongated, conical needles were made using a dual-beam focused ion beam system, allowing the specimen thickness to be geometrically determined for a range of thickness values. From the same samples electron energy loss maps were acquired and the plasmon mean free path (lambda) for inelastic scattering was determined experimentally from the measured values of specimen thickness. To test the method lambda was determined for Ni (174 +/- 17 nm), alpha-Al(2)O(3) (143 +/- 14 nm), Si (199 +/- 20 nm) and amorphous SiO(2) (238 +/- 12 nm), and compared both to experimental values of lambda taken from the literature and to calculated values. The calculated values of lambda significantly underestimate the true sample thickness for high accelerating voltages (300 kV) and large collection angles. A linear dependence of lambda on thickness was confirmed for t/lambda < 0.5-0.6, but this method also provides an approach for calibrating lambda at sample thicknesses for which multiple scattering occurs, thus expanding the thickness range over which electron energy loss spectroscopy can be used to determine the absolute sample thickness (t/lambda > 0.6). The experimental method proposed in this contribution offers a means to calibrate lambda for any type of material or phase that can be milled using a focused ion beam system.

摘要

使用双束聚焦离子束系统制备了呈细长锥形针状的透射电子显微镜样品,允许对一系列厚度值的样品厚度进行几何确定。从相同的样品中获得了电子能量损失图谱,并从测量的样品厚度值实验确定了非弹性散射的等离子体平均自由程(lambda)。为了测试该方法,lambda 被确定为 Ni(174±17nm)、alpha-Al(2)O(3)(143±14nm)、Si(199±20nm)和非晶 SiO(2)(238±12nm),并与文献中取自实验的 lambda 值和计算值进行了比较。对于高加速电压(300kV)和大收集角,lambda 的计算值显著低估了真实样品厚度。对于 t/lambda < 0.5-0.6,lambda 与厚度呈线性关系,但该方法还提供了一种在发生多次散射的样品厚度下校准 lambda 的方法,从而扩展了电子能量损失光谱可用于确定绝对样品厚度(t/lambda > 0.6)的厚度范围。本文提出的实验方法为使用聚焦离子束系统可以铣削的任何类型的材料或相提供了校准 lambda 的手段。

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