Carbon nanotube pellicles: imaging results of the first full-field extreme ultraviolet exposures

极紫外光刻 极端紫外线 扫描仪 碳纳米管 材料科学 光学 耐久性 平版印刷术 薄脆饼 纳米技术 光电子学 物理 复合材料 激光器
作者
Joost Bekaert,Emily Gallagher,R. Jonckheere,Lieve Van Look,Remko Aubert,Vineet Vijayakrishnan Nair,Marina Y. Timmermans,Ivan Pollentier,Eric Hendrickx,Alexander Klein,Gokay Yeğen,Pär Broman
出处
期刊:Journal of micro/nanopatterning, materials, and metrology [SPIE - International Society for Optical Engineering]
卷期号:20 (02) 被引量:2
标识
DOI:10.1117/1.jmm.20.2.021005
摘要

Extreme ultraviolet (EUV) lithography was recently implemented in high-volume wafer production. Consequently, maximizing yield is gaining importance. One key component to achieving optimal yield is using a pellicle to hold particles out of the focal plane and thereby minimizing the printing of defects. The carbon nanotube (CNT) pellicle is a membrane consisting of a network of CNTs with a demonstrated EUV transmission (EUV-T) of up to 98%. The challenge is balancing the CNT material parameters for optimal performance in the EUV scanner: low probability for particles to pass, low impact on imaging through scattered light, and high durability in the scanner environment, while maintaining high transmission. We report results of the first full-field CNT pellicle exposures on an EUV scanner. We demonstrate handling of the pellicles, without breakage, and provide a first assessment of their imaging behavior. Multiple single- and double-walled uncoated CNT pellicles with EUV-T of up to 97.7% were exposed on the EUV scanner at imec, and minimal impact on the imaging was confirmed. In these exposures, uncoated CNT pellicles that do not yet meet the specifications regarding lifetime were used. Therefore, ongoing developments focus on CNT durability in scanner environments. The presented demonstration proves the value of a CNT-based EUV pellicle solution.
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