Foundations of low-temperature plasma enhanced materials synthesis and etching

纳米技术 微电子 材料科学 等离子体刻蚀 等离子体 半导体 蚀刻(微加工) 工程物理 基质(水族馆) 光电子学 物理 量子力学 海洋学 地质学 图层(电子)
作者
G. S. Oehrlein,Satoshi Hamaguchi
出处
期刊:Plasma Sources Science and Technology [IOP Publishing]
卷期号:27 (2): 023001-023001 被引量:139
标识
DOI:10.1088/1361-6595/aaa86c
摘要

Low temperature plasma (LTP)-based synthesis of advanced materials has played a transformational role in multiple industries, including the semiconductor industry, liquid crystal displays, coatings and renewable energy. Similarly, the plasma-based transfer of lithographically defined resist patterns into other materials, e.g. silicon, SiO2, Si3N4 and other electronic materials, has led to the production of nanometer scale devices that are the basis of the information technology, microsystems, and many other technologies based on patterned films or substrates. In this article we review the scientific foundations of both LTP-based materials synthesis at low substrate temperature and LTP-based isotropic and directional etching used to transfer lithographically produced resist patterns into underlying materials. We cover the fundamental principles that are the basis of successful application of the LTP techniques to technological uses and provide an understanding of technological factors that may control or limit material synthesis or surface processing with the use of LTP. We precede these sections with a general discussion of plasma surface interactions, the LTP-generated particle fluxes including electrons, ions, radicals, excited neutrals and photons that simultaneously contact and modify surfaces. The surfaces can be in the line of sight of the discharge or hidden from direct interaction for structured substrates. All parts of the article are extensively referenced, which is intended to help the reader study the topics discussed here in more detail.
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