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- W177681616 abstract "Experimental characterization of magnetic anisotropy and intergranular magnetic couphng for currently developed thin film media was carried out with magnetic torque analysis. The magnitude of the magnetic field where rotational hysteresis loss vanishes shows an almost constant value in each material independent of coercive force Hc. It is concluded that this field nearly corresponds to magnetic anisotropy field of grains. Furthermore, the increase of Hc in almost all films is mainly caused by the decrease of the strength of intergranular exchange coupling, which directly corresponds to the decrease the media noise. It is quantitatively clarified that the inducement of macroscopic anisotropy mainly due to the texture of the substrate surface is effectively used to make up for the decrease of squareness Mr./Ms caused by the making progress of the magnetic isolation of grains. On the other hand, with decreasing the strength of intergranular coupling, the number of grains where He is determined by reversible rotation of magnetization gradually increases. Furthermore, the existence of incoherent magnetization reversal in grains is suggested in the real films especially in CoCrTa media." @default.
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- W177681616 date "1994-01-01" @default.
- W177681616 modified "2023-09-22" @default.
- W177681616 title "Experimental characterization of magnetic anisotropy and intergranular interaction for thin film media" @default.
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- W177681616 doi "https://doi.org/10.1016/b978-1-4832-8380-7.50183-8" @default.
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