Abstract

We present a high resolution study of the ferromagnetic layer thickness dependence of exchange bias field (HEB) and coercivity (HC) in IrMn/Co and FeMn/Co bilayers using the magneto-optical Kerr effect. Samples are sputtered wedges on silicon with Co thicknesses ranging from 1 to 17 nm. The IrMn/Co (with exchange bias interface energy of ∼0.14 erg/cm2) shows square loops, a smooth increase in HEB with inverse thickness, and a complicated behavior for coercivity, perhaps due to competition with thickness dependent coercive mechanisms. The FeMn/Co (with exchange bias interface energy of ∼0.059 erg/cm2) shows more rounded loops, a plateau of HEB with decreasing thickness, and a smooth increase in coercivity with inverse thickness.

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