Boshra Afra
Australian National University
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Publication
Featured researches published by Boshra Afra.
Journal of Physics: Condensed Matter | 2013
Boshra Afra; Matias Rodriguez; C. Trautmann; Olli H. Pakarinen; Flyura Djurabekova; K. Nordlund; Thomas Bierschenk; Raquel Giulian; Mark C Ridgway; Giancarlo Rizza; Nigel Kirby; M. Toulemonde; Patrick Kluth
The morphology of swift heavy ion tracks in crystalline α-quartz was investigated using small angle x-ray scattering (SAXS), molecular dynamics (MD) simulations and transmission electron microscopy. Tracks were generated by irradiation with heavy ions with energies between 27 MeV and 2.2 GeV. The analysis of the SAXS data indicates a density change of the tracks of ~2 ± 1% compared to the surrounding quartz matrix for all irradiation conditions. The track radii only show a weak dependence on the electronic energy loss at values above 17 keV nm(-1), in contrast to values previously reported from Rutherford backscattering spectrometry measurements and expectations from the inelastic thermal spike model. The MD simulations are in good agreement at low energy losses, yet predict larger radii than SAXS at high ion energies. The observed discrepancies are discussed with respect to the formation of a defective halo around an amorphous track core, the existence of high stresses and/or the possible presence of a boiling phase in quartz predicted by the inelastic thermal spike model.
Journal of Applied Crystallography | 2013
Daniel Schauries; Meidong Lang; Olli H. Pakarinen; S. Botis; Boshra Afra; Matias Rodriguez; Flyura Djurabekova; K. Nordlund; Daniel Severin; Markus Bender; Weixing Li; C. Trautmann; Rodney C. Ewing; Nigel Kirby; Patrick Kluth
Ion tracks were created in natural quartz and fluorapatite from Durango, Mexico, by irradiation with 2.2 GeV Au ions at elevated temperatures of up to 913 K. The track radii were analysed using small-angle X-ray scattering, revealing an increase in the ion track radius of approximately 0.1 nm per 100 K increase in irradiation temperature. Molecular dynamics simulations and thermal spike calculations are in good agreement with these values and indicate that the increase in track radii at elevated irradiation temperatures is due to a lower energy required to reach melting of the material. The post-irradiation annealing behaviour studied for apatite remained unchanged.
Applied Physics Letters | 2014
Patrick Kluth; James Sullivan; Weixing Li; Ryan Weed; Claudia Schnohr; Raquel Giulian; Leandro Araujo; Wen Lei; Matias Rodriguez; Boshra Afra; Thomas Bierschenk; Rodney C. Ewing; Mark C Ridgway
Nano-porous structures form in GaSb after ion irradiation with 185 MeV Au ions. The porous layer formation is governed by the dominant electronic energy loss at this energy regime. The porous layer morphology differs significantly from that previously reported for low-energy, ion-irradiated GaSb. Prior to the onset of porosity, positron annihilation lifetime spectroscopy indicates the formation of small vacancy clusters in single ion impacts, while transmission electron microscopy reveals fragmentation of the GaSb into nanocrystallites embedded in an amorphous matrix. Following this fragmentation process, macroscopic porosity forms, presumably within the amorphous phase.
Nanotechnology | 2016
Steffen Wolf; Jura Rensberg; Andreas Johannes; R. Thomae; F. Smit; R. Neveling; M.K. Moodley; Thomas Bierschenk; M. Rodriquez; Boshra Afra; Shakeeb Bin Hasan; Carsten Rockstuhl; Mark C Ridgway; K. Bharuth-Ram; Carsten Ronning
Spherical silver nanoparticles were prepared by means of ion beam synthesis in lithium niobate. The embedded nanoparticles were then irradiated with energetic (84)Kr and (197)Au ions, resulting in different electronic energy losses between 8.1 and 27.5 keV nm(-1) in the top layer of the samples. Due to the high electronic energy losses of the irradiating ions, molten ion tracks are formed inside the lithium niobate in which the elongated Ag nanoparticles are formed. This process is strongly dependent on the initial particle size and leads to a broad aspect ratio distribution. Extinction spectra of the samples feature the extinction maximum with shoulders on either side. While the maximum is caused by numerous remaining spherical nanoparticles, the shoulders can be attributed to elongated particles. The latter could be verified by COMSOL simulations. The extinction spectra are thus a superposition of the spectra of all individual particles.
Journal of Applied Physics | 2015
Daniel Schauries; Aleksi A. Leino; Boshra Afra; Matias Rodriguez; Flyura Djurabekova; K. Nordlund; Nigel Kirby; C. Trautmann; Patrick Kluth
The structure and thermal response of amorphous ion tracks formed along the [112¯0], [101¯0], and [0001]-directions in crystalline quartz have been investigated using small angle x-ray scattering. The radii of the ion tracks vary by about 5% (0.3 nm) for tracks along different crystallographic directions. Molecular dynamics simulations reproduce this anisotropy along the [101¯0] and [0001] directions and suggest that differences in thermal conductivity along these directions are partly responsible for this observation. Using in situ annealing, tracks along the [101¯0] and [0001] directions were shown to recrystallize during thermal annealing around 960–1020 °C with activations energies around 6 eV, while those along the [112¯0]-direction already disappeared at 640 °C with a significantly lower activation energy around 3–4 eV.
Physical Review Letters | 2013
Mark C Ridgway; Thomas Bierschenk; Raquel Giulian; Boshra Afra; Matias Rodriguez; Leandro Araujo; Aidan Byrne; Nigel Kirby; Olli H. Pakarinen; Flyura Djurabekova; K. Nordlund; Marika Schleberger; O. Osmani; Nikita Medvedev; B. Rethfeld; Patrick Kluth
Physical Review B | 2011
Boshra Afra; Meidong Lang; Matias Rodriguez; J Zhang; Raquel Giulian; Nigel Kirby; Rodney C. Ewing; C. Trautmann; M. Toulemonde; Patrick Kluth
Journal of Non-crystalline Solids | 2012
Matias Rodriguez; Boshra Afra; C. Trautmann; M. Toulemonde; Thomas Bierschenk; James Leslie; Raquel Giulian; Nigel Kirby; Patrick Kluth
Physical Review B | 2013
Thomas Bierschenk; Raquel Giulian; Boshra Afra; Matias Rodriguez; Daniel Schauries; Stephen T. Mudie; Olli H. Pakarinen; Flyura Djurabekova; K. Nordlund; O. Osmani; Nikita Medvedev; B. Rethfeld; Mark C Ridgway; Patrick Kluth
Nuclear Instruments & Methods in Physics Research Section B-beam Interactions With Materials and Atoms | 2014
Daniel Schauries; Boshra Afra; Thomas Bierschenk; Maik Lang; Matias Rodriguez; C. Trautmann; Weixing Li; Rodney C. Ewing; Patrick Kluth