Issue |
E3S Web of Conf.
Volume 401, 2023
V International Scientific Conference “Construction Mechanics, Hydraulics and Water Resources Engineering” (CONMECHYDRO - 2023)
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Article Number | 05006 | |
Number of page(s) | 6 | |
Section | Engineering Materials Science, Intelligent Transport Systems and Transport Logistics | |
DOI | https://doi.org/10.1051/e3sconf/202340105006 | |
Published online | 11 July 2023 |
Impact of bombardment by Ar+, Na+ and O2+ ions on spectra of elastically scattered electrons of single-crystal Ge
Tashkent State Technical University, Tashkent, Uzbekistan
* Corresponding author: d.ftmet@gmail.com
The impact of bombardment by Ar+, Na+, and O2+ ions on crystal structure, composition, and excitation energy of plasma oscillations and band-to-band transitions, was studied using elastically scattered electron spectroscopy. It has been shown that, regardless of the type of ions, after bombardment with ions with E0 = 1 keV at saturation dose D = Dsat, the near-surface layers of Ge(111) were subjected to significant disorientation. While in the case of bombardment by Ar+ ions, we don’t see any noticeable change in the composition, energy of band-to-band transitions, and excitation of plasma oscillations, the bombardment by Na+ and O2+ ions appear to lead to the formation of compounds between atoms of Ge and dopant atoms. As a result, we witness a somewhat dramatic change in the structure of the spectrum of elastically scattered electrons (ESE); in particular, the spectrum changes dramatically: in the range Ep ≤ 25 − 30 eV, whereby all features pertinent to Ge(111) seem to disappear altogether whereas those formerly unknown do appear instead. After heating of Ge(111) previously implanted by Na+ ions at T = 750 K, a continuous homogeneous NaGe film with a thickness of 35−40 Å is formed, and in the case of O2+ A GeO2 film with a 20−25 Å thickness formed at T = 850 K. The share of ion bond and the charge quantity Δq transferred by cation to anion were determined judging by a chemical shift of M45 core level peak of Ge.
© The Authors, published by EDP Sciences, 2023
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