材料科学
双层
压力(语言学)
硅
复合材料
退火(玻璃)
极紫外光刻
图层(电子)
抗压强度
切片
波长
极限抗拉强度
钼
沉积(地质)
光学
薄脆饼
薄膜
残余应力
应力松弛
压缩(物理)
光电子学
溅射沉积
堆积
应力集中
作者
Katrina Rook,Paul Turner,Antonio Checco,Mohammad Saghayezhian,Meng H. Lee,Marjorie Chee
出处
期刊:
日期:2025-09-19
卷期号:: 75-75
摘要
The reflective layer of EUV mask blanks consists of an ion-beam-deposited multilayer of 40-50 repeats of (3nm Mo / 4nm Si) bilayers, capped with a Ru-based protective layer. We present a quantitative analysis of Mo/Si multilayer stress, from stacks deposited onto bare Silicon wafers. We demonstrate compressive stress of -700 MPa within the 4nm Silicon layers. Molybdenum single layer stress varies from compressive to tensile depending on film thickness, and at 3nm is slightly tensile. The net multilayer stress is -300 MPa compressive, dominated by the properties of the Silicon layers. Multilayer stress is insensitive to the total number of bilayers. After annealing at 150°C, stress is relieved by about half, down to -150 MPa compressive. Mask bow can be estimated using the Stoney equation, and we deduce bow levels resulting from the multilayer alone of ~ 0.5 -1 μm. Since stress is independent of the number of bilayers, mask bow increases approximately linearly with the bilayer count. We investigate process tuning parameters, and show that stress can be minimized at lower deposition rate or more off-normal deposition angle. We extend the analysis to potential future multilayers for high-NA or shorter wavelength lithography.
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