Spin-dependent transport in nanocomposite C:Co films


Spin-dependent transport in nanocomposite C:Co films

Zhou, S.; Berndt, M.; Bürger, D.; Heera, V.; Potzger, K.; Abrasonis, G.; Radnóczi, G.; Kovács, G. J.; Kolitsch, A.; Helm, M.; Fassbender, J.; Möller, W.; Schmidt, H.

The magneto-transport properties of nanocomposite C:Co (15 and 40 at.% Co) thin films are investigated. The films were grown by ion beam co-sputtering on thermally oxidized silicon substrates in the temperature range from 200 to 500 °C. Two major effects are reported: (i) a large anomalous Hall effect amounting to 2 μΩ cm, and (ii) a negative magnetoresistance. Both the field-dependent resistivity and Hall resistivity curves coincide with the rescaled magnetization curves, a finding that is consistent with spin-dependent transport. These findings suggest that C:Co nanocomposites are promising candidates for carbon-based Hall sensors and spintronic devices.

Keywords: Carbon:cobalt nanocomposite; TEM; Magneto-transport; Anomalous hall effect; Magnetic nanoparticles

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