Temperature-dependent morphology and composition of ultra-thin GeSn epilayers prepared by remote plasma enhanced chemical vapor deposition

Author:

Jiang Jiechao1ORCID,Chetuya Nonso Martin1,Meletis Efstathios I.1,Ngai Joseph H.2,Grzybowski Gordon J.3ORCID,Claflin Bruce4ORCID

Affiliation:

1. Materials Science and Engineering Department, University of Texas at Arlington 1 , Arlington, Texas 76019

2. Department of Physics, University of Texas at Arlington 2 , Arlington, Texas 76019

3. KBR 3 , 3725 Pentagon Blvd., Suite 100, Beavercreek, Ohio 45431

4. Air Force Research Laboratory 4 , 2241 Avionics Circle, Wright-Patterson, AFB, Ohio 45433

Abstract

Two distinct ultra-thin Ge1−xSnx (x ≤ 0.1) epilayers were deposited on (001) Si substrates at 457 and 313 °C through remote plasma-enhanced chemical vapor deposition. These films are considered potential initiation layers for synthesizing thick epitaxial GeSn films. The GeSn film deposited at 313 °C has a thickness of 10 nm and exhibits a highly epitaxial continuous structure with its lattice being compressed along the interface plane to coherently match Si without mismatch dislocations. The GeSn film deposited at 457 °C exhibits a discrete epitaxial island-like morphology with a peak height of ∼30 nm and full-width half maximum (FWHM) varying from 20 to 100 nm. GeSn islands with an FWHM smaller than 20 nm are defect free, whereas those exceeding 25 nm encompass nanotwins and/or stacking faults. The GeSn islands form two-dimensional modulated superlattice structures at the interface with Si. The GeSn film deposited at 457 °C possesses a lower Sn content compared to the one deposited at lower temperature. The potential impact of using these two distinct ultra-thin layers as initiation layers for the direct growth of thicker GeSn epitaxial films on (001) Si substrates is discussed.

Funder

Air Force Office of Scientific Research

National Science Foundation

Publisher

American Vacuum Society

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