In-line Raman spectroscopy for stacked nanosheet device manufacturing

拉曼光谱 材料科学 计量学 光谱学 衍射 外延 光电子学 X射线晶体学 分析化学(期刊) 光学 纳米技术 化学 物理 图层(电子) 量子力学 色谱法
作者
Daniel Schmidt,Curtis Durfee,Jun‐Tao Li,Nicolas Loubet,Aron Cepler,Lior Neeman,Noga Meir,Jacob Ofek,Yonatan Oren,Daniel Fishman
出处
期刊:Metrology, Inspection, and Process Control for Semiconductor Manufacturing XXXV 卷期号:: 57-57 被引量:5
标识
DOI:10.1117/12.2582181
摘要

In-line Raman spectroscopy for compositional and strain metrology throughout front-end-of-line manufacturing of next generation stacked gate-all-around nanosheet field-effect transistors is presented. Thin and alternating layers of fully strained pseudomorphic Si(1-x)Gex and Si were grown epitaxially on a Si substrate and subsequently patterned. Intentional strain variations were introduced by changing the Ge content (x = 0.25, 0,35, 0.50). Polarization-dependent in-line Raman spectroscopy was employed to characterize and quantify the strain evolution of Si and Si(1-x)Gex nanosheets throughout front-end-of-line processing by focusing on the analysis of Si-Si and Si-Ge optical phonon modes. To evaluate the accuracy of the Raman metrology results, strain reference data were acquired by non-destructive high-resolution x-ray diffraction and from destructive lattice deformation maps using precession electron diffraction. It was found that the germanium-alloy composition as well as Si and Si(1-x)Gex strain obtained by Raman spectroscopy are in excellent agreement with reference metrology and follow trends of previously published simulations.

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