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Perpendicular magnetic recording write head with main pole formed on a metallic amorphous underlayer

机译:垂直磁记录写头,其主极形成在金属非晶质底层上

摘要

A perpendicular magnetic recording write head has a main pole that is typically CoFe electroplated into a generally trapezoidal shaped alumina trench. A metallic side gap layer is deposited into the alumina trench to adjust the trench width to the desired main pole dimension. A nonmagnetic metallic amorphous underlayer, preferably an amorphous NiTa alloy or an amorphous NiNb alloy, is then deposited on the side gap layer. A pole seed layer, such as a NiCr/CoFe bilayer, is deposited into the trench onto the metallic amorphous underlayer prior to electroplating the CoFe main pole. The metallic amorphous underlayer serves to reset the growth between the side gap layer and the NiCr/CoFe pole seed layer. The metallic amorphous underlayer does not insulate the electroplating CoFe layer from the metallic side gap layer, which allows for better current conduction normal to the layers, resulting in a main pole with improved magnetic properties.
机译:垂直磁记录写入头具有主极,该主极通常被CoFe电镀到通常为梯形的氧化铝沟槽中。将金属侧隙层沉积到氧化铝沟槽中,以将沟槽宽度调整到所需的主极尺寸。然后在侧隙层上沉积非磁性金属非晶底层,优选非晶NiTa合金或非晶NiNb合金。在电镀CoFe主电极之前,先将极晶种层(例如NiCr / CoFe双层)沉积到沟槽中的金属非晶质底层上。金属非晶底层用于使侧隙层和NiCr / CoFe极晶种层之间的生长复位。金属无定形底层不使电镀CoFe层与金属侧隙层绝缘,这允许垂直于各层的更好的电流传导,从而导致主极具有改善的磁性能。

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