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Thermal fluctuation of magnetization in nanocrystalline FePt thin films with high coercivity

机译:高矫顽力纳米FePt薄膜中磁化的热波动

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摘要

The effect of thermal fluctuations of magnetization on static and dynamic properties is discussed for nanocrystalline FePt films. The large magnetocrystalline anisotropy K/sub u/ of L1/sub 0/ type FePt results in large K/sub u/V/(kT) values of more than 70 even for very fine grain sizes of 7-8 nm, indicating the potential of this alloy film to resist thermal fluctuation of magnetization. It is successfully demonstrated that larger K/sub u/V/(kT) values of these films lead to lower magnetic viscosity. Annealing at higher temperature results in larger K/sub u/V/kT values and smaller V/sub act/. The remanent coercivity measured at high sweep rate by using pulsed magnetic fields indicates the high thermal stability of these alloy films at high frequencies. However, the results indicated that care should be taken to induce an adequate magnitude of K/sub u/ for the FePt alloy to be used as ultrahigh density recording media.
机译:讨论了磁化热波动对纳米晶FePt膜的静态和动态特性的影响。 L1 / sub 0 / FePt型的大磁晶各向异性K / sub u /导致即使在7-8 nm的非常细的晶粒中,K / sub u / V /(kT)值也大于70。这种合金膜的抗磁化热波动性。成功地证明,这些膜的较大的K / sub u / V /(kT)值导致较低的磁粘度。较高温度下的退火导致较大的K / sub u / V / kT值和较小的V / sub act /。通过使用脉冲磁场在高扫描速率下测得的剩余矫顽力表明这些合金薄膜在高频下具有很高的热稳定性。但是,结果表明,要小心使用足够高的K / sub u /值,才能将FePt合金用作超高密度记录介质。

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