Analysis of crystal structure of epitaxial nanoheterostructures with multiple pseudomorphic quantum wells {InхGa1–хAs/GaAs} on GaAs (100), (110) AND (111) )А substrates
- Autores: Klimov Е.А.1,2, Klochkov A.N.3, Pushkarev S.S.1
- 
							Afiliações: 
							- National Research Centre “Kurchatov Institute”
- Orion R&P Association, JSC
- National Research Nuclear University “MEPhI”
 
- Edição: Volume 70, Nº 1 (2025)
- Páginas: 133-140
- Seção: CRYSTAL GROWTH
- URL: https://cardiosomatics.ru/0023-4761/article/view/686189
- DOI: https://doi.org/10.31857/S0023476125010184
- EDN: https://elibrary.ru/IRMOQG
- ID: 686189
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		                                					Resumo
The crystal structure of {In0.1Ga0.9As/GaAs} × 10 and {In0.2Ga0.8As/GaAs} × 10 epitaxial multilayer films on GaAs substrates with different orientations has been studied (100), (110), (111)A in order to identify features that may be related to the previously discovered increased efficiency of terahertz radiation generation in films with orientations (110) and (111)A. Significant concentrations of twins and package defects were found in films on non-standard GaAs (110) and (111)A substrates. The composition and thicknesses of individual layers of heterostructures on GaAs (100) substrates have been refined by analyzing thickness fluctuations on diffraction reflection curves.
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	                        Sobre autores
Е. Klimov
National Research Centre “Kurchatov Institute”; Orion R&P Association, JSC
							Autor responsável pela correspondência
							Email: s_s_e_r_p@mail.ru
				                					                																			                												                	Rússia, 							Moscow; Moscow						
A. Klochkov
National Research Nuclear University “MEPhI”
														Email: s_s_e_r_p@mail.ru
				                					                																			                												                	Rússia, 							Moscow						
S. Pushkarev
National Research Centre “Kurchatov Institute”
														Email: s_s_e_r_p@mail.ru
				                					                																			                												                	Rússia, 							Moscow						
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