Mössbauer measurements have been performed on a GaAs single crystal sample following the implantation of radioactive Mn (T = 1.5 min) ions. The Mn ions were implanted with 60 keV energy into a GaAs sample held at temperatures of 300-700 K in an implantation chamber. Implantation fluences were <2 × 10 ions/cm which assured single ion implantations. Mössbauer spectra were measured with a resonance detector equipped with Fe enriched stainless steel foils mounted on a conventional drive system outside the implantation chamber. The spectra at the lower temperatures are dominated by an asymmetrically broadened quadrupole split doublet (Fe ), assigned to Fe in implantation induced damaged surroundings; at higher temperatures a single line dominates, due to Fe at undisturbed substitutional sites (Fe). The spectra also required small contributions (approx. 13-5%) of a quadrupole split component, Fe, which may be due to interstitial Fe and Fe in vacancy complexes. A prominent annealing stage is evident in the temperature range 300-550 K, leading to substantial increase in the Fe fraction, and attributed to mobile Ga vacancies. © 2009 Springer Science+Business Media B.V.

Mössbauer study of Fe in GaAs following 57Mn ?+? implantation

Mantovan R;
2009

Abstract

Mössbauer measurements have been performed on a GaAs single crystal sample following the implantation of radioactive Mn (T = 1.5 min) ions. The Mn ions were implanted with 60 keV energy into a GaAs sample held at temperatures of 300-700 K in an implantation chamber. Implantation fluences were <2 × 10 ions/cm which assured single ion implantations. Mössbauer spectra were measured with a resonance detector equipped with Fe enriched stainless steel foils mounted on a conventional drive system outside the implantation chamber. The spectra at the lower temperatures are dominated by an asymmetrically broadened quadrupole split doublet (Fe ), assigned to Fe in implantation induced damaged surroundings; at higher temperatures a single line dominates, due to Fe at undisturbed substitutional sites (Fe). The spectra also required small contributions (approx. 13-5%) of a quadrupole split component, Fe, which may be due to interstitial Fe and Fe in vacancy complexes. A prominent annealing stage is evident in the temperature range 300-550 K, leading to substantial increase in the Fe fraction, and attributed to mobile Ga vacancies. © 2009 Springer Science+Business Media B.V.
2009
57 Mn implantation
Fe sites
GaAs
Mössbauer spectroscopy
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/462279
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