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Maskless Lithography and Nanopatterning with Electron and Ion Multi-Beam Projection

机译:电子和离子多束投影的无掩模光刻和纳米构图

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Multi-beam writing becomes mandatory in order to stay within reasonable realization times for the fabrication of leading-edge complex masks and templates. IMS Nanofabrication has developed multi-beam projection techniques implementing a programmable aperture plate system (APS) and charged-particle projection optics with 200x reduction. Proof-of-concept of multi-beam writing was demonstrated in 2009 with 10 keV ion multi-beams and 50 keV electron multi-beams using 43-thousand and 2.5-thousand, respectively, programmable 12.5nm sized beams. In Q4 2009 the development of a 50 keV electron multi-beam Mask Exposure Tool (eMET) was started with the aim to realize 256-thousand programmable 20 nm and 10 nm sized beams. The eMET column realization will provide important synergies for the development of projection mask-less lithography (PML2) for direct write on wafers. In order to enhance throughput a Multi-Axis-PML2 scheme is put forward with potential throughput of 5 WPH for the 16 nm hp technology node and below. Clustering such maskless tools a throughput of 50-100 WPH within a scanner floor space is envisioned. Ion multi-beam techniques may be applied for 2.5D / 3D template fabrication and resistless nanopatterning.
机译:为了在最先进的复杂掩模和模板的制造中保持合理的实现时间,多光束写入成为强制性的。 IMS Nanofabrication开发了多光束投影技术,该技术实现了可编程孔板系统(APS)和带电粒子投影光学器件,其光学性能降低了200倍。多束写入的概念验证于2009年用10 keV离子多束和50 keV电子多束进行了证明,分别使用了4.3万和2.5万可编程12.5nm尺寸的光束。在2009年第四季度,开始开发50 keV电子多束掩模曝光工具(eMET),以实现25万6千个可编程20 nm和10 nm尺寸的光束。 eMET列的实现将为开发直接在晶圆上写入的无投影掩模光刻(PML2)提供重要的协同作用。为了提高吞吐量,提出了一种多轴PML2方案,对于16 nm hp以下的技术节点,其潜在吞吐量为5 WPH。设想将这样的无掩模工具聚类,在扫描仪占地面积内的吞吐量为50-100 WPH。离子多束技术可用于2.5D / 3D模板制造和无抗蚀剂纳米图案化。

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