Barac, M., Siketić, Z., Brajković, M. & Bogdanović Radović, I. (2021). Low energy MeV SIMS yield measurements of various inorganic samples [Data set]. doi:10.5281/zenodo.5957984
Barac, Marko, et al. Low energy MeV SIMS yield measurements of various inorganic samples. Institut Ruđer Bošković, 2021. 18 Nov 2024. doi:10.5281/zenodo.5957984
Barac, Marko, Zdravko Siketić, Marko Brajković, and Ivančica Bogdanović Radović. 2021. Low energy MeV SIMS yield measurements of various inorganic samples. Institut Ruđer Bošković. doi:10.5281/zenodo.5957984
Barac, M., et al. 2021. Low energy MeV SIMS yield measurements of various inorganic samples. Institut Ruđer Bošković. [Online]. [Accessed 18 November 2024]. Available from: https://doi.org/10.5281/zenodo.5957984
Barac M, Siketić Z, Brajković M, Bogdanović Radović I. Low energy MeV SIMS yield measurements of various inorganic samples. [Internet]. Institut Ruđer Bošković: Ruđer Bošković Institute, Bijenička cesta 54, 10000 Zagreb, Croatia, HR; 2021, [cited 2024 November 18] Available from: https://doi.org/10.5281/zenodo.5957984
M. Barac, Z. Siketić, M. Brajković and I. Bogdanović Radović, Low energy MeV SIMS yield measurements of various inorganic samples, Institut Ruđer Bošković, 2021. Accessed on: Nov 18, 2024. Available: https://doi.org/10.5281/zenodo.5957984
Title (english)
Low energy MeV SIMS yield measurements of various inorganic samples
Scientific / art field, discipline and subdiscipline
NATURAL SCIENCES Physics Nuclear Physics
Abstract (english)
The low energy range (a few 100 keV to a few MeV) primary ion mode in MeV Secondary Ion Mass Spectrometry (MeV SIMS) and its potential in exploiting the capabilities of conventional (keV) SIMS and MeV SIMS simultaneously was investigated. The aim is to see if in this energy range both types of materials, inorganic and organic, can be simultaneously analyzed. A feasibility study was conducted, first by analyzing the dependence of secondary ion yields in Indium Tin Oxide (ITO – In2O5Sn) and leucine (C6H13NO2) on various primary ion energies and charge states of Cu beam, within the scope of equal influence of electronic and nuclear stopping. Expected behavior was observed for both targets (mainly nuclear sputtering for ITO and electronic sputtering for leucine). MeV SIMS images of samples containing separate regions of Cr and leucine were obtained using both keV and MeV primary ions. Based on the image contrast and measured data, the benefit of a low energy beam is demonstrated by Cr+ intensity leveling with leucine [M+H]+ intensity, as opposed to a significant contrast at higher energy. It is estimated that by lowering the energy, leucine [M+H]+ yield efficiency lowers roughly 20 times as a price for gaining about 10 times larger efficiency of Cr+ yield, while leucine [M+H]+ yield still remains sufficiently pronounced.
Ruđer Bošković Institute, Bijenička cesta 54, 10000 Zagreb, Croatia, Croatia
Project
Number: 824096 Title (english): Research And Development with Ion Beams – Advancing Technology in Europe Acronym: RADIATE Leader: Iva Bogdanović Radović Jurisdiction: eu Funding stream: H2020