Studying Evolution of the Ensemble of Micropores in a SiC/Si Structure during Its Growth by the Method of Atom Substitution


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The time evolution of the ensemble of micropores formed in the near-surface region of silicon during the growth of thin films of silicon carbide is studied by the method of atom substitution. SiC/Si samples are studied by scanning electron microscopy, ellipsometry, and confocal Raman microscopy. The formation of the porous layer involves several characteristic stages: the emergence of single pores, their growth with the formation of dendrite-like structures, and subsequent coalescence into a continuous layer. It is shown that the thickness of the porous layer at the initial stages of the growth is proportional to the cubic root of time. The possible mechanisms of pore formation are discussed and a theoretical model is proposed to describe the dependence of the average thickness of the porous layer on time. The model is in a good qualitative agreement with the experimental results.

Sobre autores

A. Redkov

Institute of Problems of Mechanical Engineering, Russian Academy of Sciences; St. Petersburg National Research University of Information Technologies, Mechanics and Optics

Autor responsável pela correspondência
Email: avredkov@gmail.com
Rússia, St. Petersburg; St. Petersburg

A. Grashchenko

Institute of Problems of Mechanical Engineering, Russian Academy of Sciences; St. Petersburg National Research University of Information Technologies, Mechanics and Optics

Email: avredkov@gmail.com
Rússia, St. Petersburg; St. Petersburg

S. Kukushkin

Institute of Problems of Mechanical Engineering, Russian Academy of Sciences; St. Petersburg National Research University of Information Technologies, Mechanics and Optics; St. Petersburg State Polytechnical University

Email: avredkov@gmail.com
Rússia, St. Petersburg; St. Petersburg; St. Petersburg

A. Osipov

Institute of Problems of Mechanical Engineering, Russian Academy of Sciences; St. Petersburg National Research University of Information Technologies, Mechanics and Optics

Email: avredkov@gmail.com
Rússia, St. Petersburg; St. Petersburg

K. Kotlyar

St. Petersburg Academic University, Russian Academy of Sciences; Ioffe Institute

Email: avredkov@gmail.com
Rússia, St. Petersburg; St. Petersburg

A. Likhachev

St. Petersburg Academic University, Russian Academy of Sciences; Ioffe Institute

Email: avredkov@gmail.com
Rússia, St. Petersburg; St. Petersburg

A. Nashchekin

St. Petersburg Academic University, Russian Academy of Sciences; Ioffe Institute

Email: avredkov@gmail.com
Rússia, St. Petersburg; St. Petersburg

I. Soshnikov

St. Petersburg Academic University, Russian Academy of Sciences; Ioffe Institute

Email: avredkov@gmail.com
Rússia, St. Petersburg; St. Petersburg

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