Thermal stability of Cu and Fe nitrides and their applications for writing locally spin valves

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Abstract

We have studied the thermal stability of the Cu and Fe nitrides. These results show that a nanometer-thick Cu nitride film decomposes at the Fe 4 N growth temperature. Considering this, we propose for their use in spintronics, the room temperature growth of a nonmagnetic (FeN)/semiconducting (Cu3 N) epitaxial nitride bilayer that transforms into a ferromagnetic (Fe4 N) /metallic (Cu) one by mild thermal annealing at 700 K. This process can be employed to locally decompose by laser (or ion) irradiation FeN/ Cu3 N/ Fe4 N) trilayers, giving rise to an array of lithographically defined Fe4 N/Cu/ Fe4 N spin valves surrounded by metal/semiconductor spacers. © 2009 American Institute of Physics.

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Navío, C., Alvarez, J., Capitan, M. J., Camarero, J., & Miranda, R. (2009). Thermal stability of Cu and Fe nitrides and their applications for writing locally spin valves. Applied Physics Letters, 94(26). https://doi.org/10.1063/1.3159630

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