We address the impact of metal co-deposition in the nanodot patterning dynamics of Si(100) surfaces under normal-incidence 1 keV Ar+ion-beam sputtering (IBS). In particular, the effect of both the metal nature (Fe or Mo) and flux has been studied. Morphological and compositional evolution were followed by atomic force microscopy (AFM) and Rutherford backscattering spectrometry, respectively. For the same type of impurity, the dynamics is faster for a higher co-deposition flux, which also drives to larger asymptotic roughness and wavelength. Mo co-deposition yields rougher surfaces for a lower metal coverage than Fe and, remarkably, higher ordered patterns. X-ray photoelectron spectroscopy reveals the formation of silicide bonds even before ...
We report experiments on surface nanopatterning of Si targets which are irradiated with 2-keV Ar+ io...
We present ion beam erosion experiments on Si(001) with simultaneous sputter co-deposition of steel ...
This paper is part of: Special Issue on Surfaces Patterned by Ion SputteringWe have bombarded crysta...
Poster presented at International Symposium on Nanoscale Pattern Formation at Surfaces, which took p...
We have produced self-organised silicide nanodot patterns by medium-energy ion beam sputtering (IBS)...
3 pages, 3 figures.-- PACS nrs.: 81.05.Cy, 81.07.-b, 68.47.Fg, 81.16.Rf, 79.20.Rf, 68.35.Bs.The temp...
The dynamics of the pattern induced on a silicon surface by oblique incidence of a 40 keV Fe ion bea...
Ion beam pattern formation is a versatile and cost-efficient tool for the fabrication of well-ordere...
Pattern formation on Si(001) through 2 keV Kr+ ion beam erosion of Si(001) at an incident angle of #...
In this work, formation of self-organized Si nanostructures induced by pure Fe incorporation during ...
5 pages, 3 figures.-- PACS nrs.: 81.16.Rf, 81.65.Cf, 68.35.B-, 68.37.Lp, 68.37.Ps, 68.47.Fg.We repor...
In recent years Ion Beam Sputtering (IBS) has revealed itself as a powerful technique to induce surf...
Poster presented at the MRS Spring Meeting & Exhibit, held on April 6-10th, 2015, in San Francisco (...
In recent years Ion Beam Sputtering (IBS) has revealed itself as a powerful technique to induce surf...
We investigate pattern formation on Si by sputter erosion under simultaneous co-deposition of Fe ato...
We report experiments on surface nanopatterning of Si targets which are irradiated with 2-keV Ar+ io...
We present ion beam erosion experiments on Si(001) with simultaneous sputter co-deposition of steel ...
This paper is part of: Special Issue on Surfaces Patterned by Ion SputteringWe have bombarded crysta...
Poster presented at International Symposium on Nanoscale Pattern Formation at Surfaces, which took p...
We have produced self-organised silicide nanodot patterns by medium-energy ion beam sputtering (IBS)...
3 pages, 3 figures.-- PACS nrs.: 81.05.Cy, 81.07.-b, 68.47.Fg, 81.16.Rf, 79.20.Rf, 68.35.Bs.The temp...
The dynamics of the pattern induced on a silicon surface by oblique incidence of a 40 keV Fe ion bea...
Ion beam pattern formation is a versatile and cost-efficient tool for the fabrication of well-ordere...
Pattern formation on Si(001) through 2 keV Kr+ ion beam erosion of Si(001) at an incident angle of #...
In this work, formation of self-organized Si nanostructures induced by pure Fe incorporation during ...
5 pages, 3 figures.-- PACS nrs.: 81.16.Rf, 81.65.Cf, 68.35.B-, 68.37.Lp, 68.37.Ps, 68.47.Fg.We repor...
In recent years Ion Beam Sputtering (IBS) has revealed itself as a powerful technique to induce surf...
Poster presented at the MRS Spring Meeting & Exhibit, held on April 6-10th, 2015, in San Francisco (...
In recent years Ion Beam Sputtering (IBS) has revealed itself as a powerful technique to induce surf...
We investigate pattern formation on Si by sputter erosion under simultaneous co-deposition of Fe ato...
We report experiments on surface nanopatterning of Si targets which are irradiated with 2-keV Ar+ io...
We present ion beam erosion experiments on Si(001) with simultaneous sputter co-deposition of steel ...
This paper is part of: Special Issue on Surfaces Patterned by Ion SputteringWe have bombarded crysta...