Mechanical strain in the structure of array of silicon nanowires grown on a silicon substrate
We present experimental research on mechanical strains in the structure consisting of an array of silicon nanowires grown using the metal-enhanced CVD technique on boron-doped Si(111) and Si(100) substrates. Using the electron beam induced current on a cleaved substrate, electron spin resonance, and...
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National Academy of Sciences of Ukraine. Institute of Semi conductor physics.
2019-09-01
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doaj-733bd02e4f4a4045bf02eb50a453c4a22020-11-25T02:25:42ZengNational Academy of Sciences of Ukraine. Institute of Semi conductor physics. Semiconductor Physics, Quantum Electronics & Optoelectronics 1560-80341605-65822019-09-0122329329810.15407/spqeo22.03.293Mechanical strain in the structure of array of silicon nanowires grown on a silicon substrateA.I. Klimovskaya0V. Lashkaryov Institute of Semiconductor Physics, NAS of Ukraine 41, prospect Nauky, 03680 Kyiv, UkraineWe present experimental research on mechanical strains in the structure consisting of an array of silicon nanowires grown using the metal-enhanced CVD technique on boron-doped Si(111) and Si(100) substrates. Using the electron beam induced current on a cleaved substrate, electron spin resonance, and confocal micro-Raman spectroscopy, we found that growth of silicon nanowires on a native (silicon) substrate gives rise to a strain both of the substrate and grown nanowires, too. An occurrence of the strain in the substrate was revealed by an initiation of the electron spin resonance signal from boron atoms, which is not resolved usually in unstressed silicon due to a complex energy structure of a top of the valence band. Furthermore, the strain of the substrate was proved additionally by observation of spatial dependence of the current induced by electron beam on a cleaved substrate, and by the spectral shift of Raman peak related to 3С-Si near the interface “substrate – array of nanowires”. Mechanical strain in the nanowires was more pronounced in the Raman spectra, which also revealed their complex crystal structure consisting of cubic and hexagonal phases of silicon. Model of the strain rise is discussed. http://journal-spqeo.org.ua/n3_2019/P293-298abstr.htmlarray of silicon nanowiresmechanical strainpolymorphism of wirescvd-technologygold-enhanced growth |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
A.I. Klimovskaya |
spellingShingle |
A.I. Klimovskaya Mechanical strain in the structure of array of silicon nanowires grown on a silicon substrate Semiconductor Physics, Quantum Electronics & Optoelectronics array of silicon nanowires mechanical strain polymorphism of wires cvd-technology gold-enhanced growth |
author_facet |
A.I. Klimovskaya |
author_sort |
A.I. Klimovskaya |
title |
Mechanical strain in the structure of array of silicon nanowires grown on a silicon substrate |
title_short |
Mechanical strain in the structure of array of silicon nanowires grown on a silicon substrate |
title_full |
Mechanical strain in the structure of array of silicon nanowires grown on a silicon substrate |
title_fullStr |
Mechanical strain in the structure of array of silicon nanowires grown on a silicon substrate |
title_full_unstemmed |
Mechanical strain in the structure of array of silicon nanowires grown on a silicon substrate |
title_sort |
mechanical strain in the structure of array of silicon nanowires grown on a silicon substrate |
publisher |
National Academy of Sciences of Ukraine. Institute of Semi conductor physics. |
series |
Semiconductor Physics, Quantum Electronics & Optoelectronics |
issn |
1560-8034 1605-6582 |
publishDate |
2019-09-01 |
description |
We present experimental research on mechanical strains in the structure consisting of an array of silicon nanowires grown using the metal-enhanced CVD technique on boron-doped Si(111) and Si(100) substrates. Using the electron beam induced current on a cleaved substrate, electron spin resonance, and confocal micro-Raman spectroscopy, we found that growth of silicon nanowires on a native (silicon) substrate gives rise to a strain both of the substrate and grown nanowires, too. An occurrence of the strain in the substrate was revealed by an initiation of the electron spin resonance signal from boron atoms, which is not resolved usually in unstressed silicon due to a complex energy structure of a top of the valence band. Furthermore, the strain of the substrate was proved additionally by observation of spatial dependence of the current induced by electron beam on a cleaved substrate, and by the spectral shift of Raman peak related to 3С-Si near the interface “substrate – array of nanowires”. Mechanical strain in the nanowires was more pronounced in the Raman spectra, which also revealed their complex crystal structure consisting of cubic and hexagonal phases of silicon. Model of the strain rise is discussed. |
topic |
array of silicon nanowires mechanical strain polymorphism of wires cvd-technology gold-enhanced growth |
url |
http://journal-spqeo.org.ua/n3_2019/P293-298abstr.html |
work_keys_str_mv |
AT aiklimovskaya mechanicalstraininthestructureofarrayofsiliconnanowiresgrownonasiliconsubstrate |
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1724850632007876608 |