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Optimization of Source Distribution for half-wavelength DOE

机译:半波长DOE的光源分布优化

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摘要

A lot of source shapes have been proposed for resolution enhancement in semiconductor exposure field, and so-called OAI (OAI: Off Axis Illumination) in them improves not only the resolution but also defocus behavior. Such kind of small window illumination was realized aperture filter at first stage but there were issues of efficiency of light source and complex OPC due to higher coherency. The advantages of use DOE (DOE : Diffractive Optical Element) are not only the flexible illumination shape available but also the controllability of intensity profile in addition to the higher efficiency of light source. However DOE design and fabrication to obtain enough resolution are difficult due to the huge design load and leading-edge fabrication. Not enough design and fabrication error lead unintended intensity distribution, and the distribution degrades the resolution and makes OPC less effective so that photomask specification shall be tighter.In this paper, as one example, dipole source shape named "Soft-Dipole" is optimized considering intensity distribution targeting 90nm with simulator and is estimated the impact to resolution and OPC. Then actual DOE is fabricated for the intended distribution and evaluated the behavior with the simulator of the DOE using captured intensity distribution. The result showed Soft-Dipole illumination had possibilities to reduce OPC load with enough resolution. Then the DOE design, the fabrication and the evaluation are discussed in this paper.
机译:已经提出了许多用于改善半导体曝光领域中的分辨率的光源形状,并且其中的所谓的OAI(OAI:离轴照明)不仅改善了分辨率而且还改善了散焦性能。这种小窗口照明最初是通过孔径滤波器实现的,但由于相干性较高,存在光源效率高,OPC复杂的问题。使用DOE(DOE:衍射光学元件)的优点不仅是可用的灵活照明形状,而且是光源的更高效率,还有强度分布的可控性。然而,由于巨大的设计负担和前沿的制造,DOE的设计和制造很难获得足够的分辨率。没有足够的设计和制造误差会导致意想不到的强度分布,并且这种分布会降低分辨率并降低OPC的效率,从而使光掩膜规范更加严格。本文以一个示例为例,考虑到了优化的偶极子源形状“ Soft-Dipole”模拟器可将目标强度分布确定为90nm,并估计其对分辨率和OPC的影响。然后,为预期的分布制造实际的DOE,并使用捕获的强度分布使用DOE的模拟器评估行为。结果表明,软偶极子照明有可能以足够的分辨率降低OPC负载。然后讨论了DOE的设计,制造和评估。

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