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Determining the Resolution Limits of Electron-Beam Lithography: Direct Measurement of the Point-Spread Function

机译:确定电子束光刻的分辨率极限:点扩散函数的直接测量

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摘要

One challenge existing since the invention of electron-beam lithography (EBL) is understanding the exposure mechanisms that limit the resolution of EBL. To overcome this challenge, we need to understand the spatial distribution of energy density deposited in the resist, that is, the point-spread function (PSF). During EBL exposure, the processes of electron scattering, phonon, photon, plasmon, and electron emission in the resist are combined, which complicates the analysis of the EBL PSF. Here, we show the measurement of delocalized energy transfer in EBL exposure by using chromatic aberration-corrected energy-filtered transmission electron microscopy (EFTEM) at the sub-10 nm scale. We have defined the role of spot size, electron scattering, secondary electrons, and volume plasmons in the lithographic PSF by performing EFTEM, momentum-resolved electron energy loss spectroscopy (EELS), sub-10 nm EBL, and Monte Carlo simulations. We expect that these results will enable alternative ways to improve the resolution limit of EBL. Furthermore, our approach to study the resolution limits of EBL may be applied to other lithographic techniques where electrons also play a key role in resist exposure, such as ion-beam-, X-ray-, and extreme-ultraviolet lithography.
机译:自从电子束光刻(EBL)发明以来,存在的一项挑战是理解限制EBL分辨率的曝光机制。为了克服这一挑战,我们需要了解沉积在抗蚀剂中的能量密度的空间分布,即点扩散函数(PSF)。在EBL曝光过程中,抗蚀剂中的电子散射,声子,光子,等离激元和电子发射过程被组合在一起,这使EBL PSF的分析变得复杂。在这里,我们显示了通过使用色差校正能量过滤的透射电子显微镜(EFTEM)在10 nm以下的尺度下,在EBL曝光中进行离域能量转移的测量。我们通过执行EFTEM,动量分辨电子能量损失谱(EELS),低于10 nm的EBL和蒙特卡洛模拟,定义了光刻PSF中光斑大小,电子散射,二次电子和体积等离子体激元的作用。我们希望这些结果将为提高EBL分辨率极限的替代方法提供可能。此外,我们研究EBL分辨率极限的方法可能会应用于其他光刻技术,其中电子在抗蚀剂曝光中也起着关键作用,例如离子束,X射线和极紫外光刻。

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