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http://dx.doi.org/10.4313/TEEM.2006.7.3.149

Rutile Ti1-xCoxO2-δ p-type Diluted Magnetic Semiconductor Thin Films  

Seong, Nak-Jin (Department of Materials Science and Engineering, Chungnam National University)
Yoon, Soon-Gil (Department of Materials Science and Engineering, Chungnam National University)
Cho, Young-Hoon (Quantum Materials Research Team, Korea Basic Science Institute)
Jung, Myung-Hwa (Quantum Materials Research Team, Korea Basic Science Institute)
Publication Information
Transactions on Electrical and Electronic Materials / v.7, no.3, 2006 , pp. 149-153 More about this Journal
Abstract
An attempting to produce a p-type diluted magnetic semiconductor (DMS) using $Ti_{1-x}Co_xO_{2-\delta}-based$ thin films was made by suitable control of the deposition parameters including deposition temperature, deposition pressure, and doping level using a pulsed laser deposition method. T$Ti_{0.97}Co_{0.03}O_{2-\delta}-based$ (TCO) films deposited at $500^{\circ}C$ at a pressure of $5\times10^{-6}$ Torr showed an anomalous Hall effect with p-type characteristics. On the other hand, films deposited at $700^{\circ}C$ at $5\times10^{-6}$ Torr showed n-type behaviors by a decreased solubility of cobalt. The charge carrier concentration in the p-type TCO films was approximately $7.9\times10^{22}/cm^3$ at 300 K and the anomalous Hall effect in the p-type TCO films was controlled by a side-jump scattering mechanism. The magnetoresistance (MR), measured at 5 K in p-type TCO films showed a positive behavior in an applied magnetic field and the MR ratio was approximately 3.5 %. The successful preparation of p-type DMS using the TCO films has the potential for use in magnetic tunneling junction devices.
Keywords
Rutile $Ti_{1-x}Co_xO_{2-\delta}$; p-type DMS; Anomalous hall effect; Magnetoresistance;
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