Ferromagnetic Ga1-xMnxAs produced by ion implantation and pulsed-laser melting

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Publication Type Journal Article
School or College College of Engineering
Department Materials Science & Engineering
Creator Scarpulla, Michael
Other Author Dubon, O. D.; Yu, K. M.; Monteiro, O.; Pillai, M. R.; Aziz, M. J.; Ridgway, M. C.
Title Ferromagnetic Ga1-xMnxAs produced by ion implantation and pulsed-laser melting
Date 2003
Description We demonstrate the formation of ferromagnetic Ga1-xMnxAs films by Mn ion implantation into GaAs followed by pulsed-laser melting. Irradiation with a single excimer laser pulse results in the epitaxial regrowth of the implanted layer with Mn substitutional fraction up to 80% and effective Curie temperature up to 29 K for samples with a maximum Mn concentration of x ≈0.03. A remanent magnetization persisting above 85 K has been observed for samples with x≈0.10, in which 40% of the Mn resides on substitutional lattice sites. We find that the ferromagnetism in Ga1-xMnxAs is rather robust to the presence of structural defects.
Type Text
Publisher American Institute of Physics (AIP)
Journal Title Applied Physics Letters
Volume 82
Issue 8
First Page 1251
Last Page 1253
DOI 10.1063/1.1555260
citatation_issn 36951
Subject Gallium arsenide; Ferromagnetic semiconductors; Remanent magnetization
Subject LCSH Diluted magnetic semiconductors; Semiconductors -- Magnetic properties; Semiconductor doping; Ion implantation; Epitaxy; Anisotropy; Semiconductors -- Defects; Ferromagnetism
Language eng
Bibliographic Citation Scarpulla, M., Dubon, O. D., Yu, K. M., Monteiro, O., Pillai, M. R., Aziz, M. J., & Ridgway, M. C. (2003). Ferromagnetic Ga1-xMnxAs produced by ion implantation and pulsed-laser melting. Applied Physics Letters, 82(8), 1251-3.
Rights Management (c)American Institute of Physics. The following article appeared in Scarpulla, M., Dubon, O. D., Yu, K. M., Monteiro, O., Pillai, M. R., Aziz, M. J., & Ridgway, M. C., Applied Physics Letters, 82(8), 2003 and may be found at http://dx.doi.org/10.1063/1.1555260
Format Medium application/pdf
Format Extent 55,218 bytes
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Reference URL https://collections.lib.utah.edu/ark:/87278/s6z616nn
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