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CDSEM AFM Hybrid metrology for the characterization of Gate-All-Around Silicon Nano Wires

机译:CDSEM AFM混合计量学,用于表征全能栅极硅纳米线

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In an ongoing study of the physical characterization of Gate-All-Around Silicon Nano Wires (GAASiNW), we found that the thin, suspended wires are prone to buckling as a function of their length and diameter. This buckling takes place between the fixed source and drain regions of the suspended wire, and can affect the device performance and therefore must be studied and controlled. For cylindrical SiNW, theory predicts that buckling has no directional preference. However, 3D CDSEM measurement results indicated that cylindrical wires prefer to buckle towards the wafer. To validate these results and to determine if the electron beam or charging is affecting our observations, we used 3D-AFM measurements to evaluate the buckling. To assure that the CDSEM and 3D-AFM measure the exact same locations, we developed a design based recipe generation approach to match the 3D-AFM and CDSEM coordinate systems. Measuring the exact same sites enables us to compare results and use 3D-AFM data to optimize CDSEM models. In this paper we will present a hybrid metrology approach to the characterization of GAASiNW for sub-nanometer variations, validating experimental results, and proposing methods to improve metrology capabilities.
机译:在正在进行的全能门形硅纳米线(GAASiNW)物理特性研究中,我们发现细的悬浮线容易因其长度和直径而弯曲。这种弯曲发生在悬线的固定源极和漏极区域之间,并且会影响器件性能,因此必须进行研究和控制。对于圆柱SiNW,理论预测屈曲没有方向性。但是,3D CDSEM测量结果表明,圆柱线更倾向于弯向晶圆。为了验证这些结果并确定电子束或充电是否正在影响我们的观察结果,我们使用了3D-AFM测量来评估屈曲。为了确保CDSEM和3D-AFM测量出的位置完全相同,我们开发了一种基于设计的配方生成方法来匹配3D-AFM和CDSEM坐标系。通过测量完全相同的位置,我们可以比较结果并使用3D-AFM数据来优化CDSEM模型。在本文中,我们将提出一种用于亚纳米级变化的GAASiNW表征的混合计量方法,验证实验结果,并提出提高计量能力的方法。

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