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Influence of Stripe Height on Critical Current Density of Spin-Torque Noise in Tunneling Magnetoresistive Read Heads

机译:条形高度对隧穿磁阻读取头中自旋扭矩噪声的临界电流密度的影响

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摘要

This paper describes the influence of the stripe height on the critical current density of the spin-torque (ST) noise in the TMR heads using the GHz range noise spectra in detail. The critical current density above which the non-thermal fluctuation noise originates from the ST slightly increases, linearly decreases, becomes minimum, and further keeps constant as the stripe height is reduced. This result means that no trend of $j_{rm c}$ appears for the stripe height. The average critical current density is approximately ${+}4.70 pm 1.1 times 10^{11}$ A/m$^{2}$, suggesting that the non-thermal fluctuation noise by the ST in the TMR head is independent of the stripe height and occurs at the current density of $10^{11}$ A/m $^{2}$. This result also suggests that this non-thermal fluctuation noise will become a serious problem for the HDD in the near future.
机译:本文使用GHz范围噪声频谱详细描述了条带高度对TMR磁头中自旋扭矩(ST)噪声的临界电流密度的影响。临界电流密度(高于该临界电流密度时,来自ST的非热波动噪声)会稍微增加,线性减小,变得最小,并随着条带高度的减小而保持恒定。此结果意味着对于条纹高度,没有 $ j_ {rm c} $ 趋势出现。平均临界电流密度约为 $ {+} 4.70 pm 1.1乘以10 ^ {11} $ A / m <公式Formulatype =“ inline”> $ ^ {2} $ ,表明TMR头中ST的非热波动噪声与条带高度无关并以 $ 10 ^ {11} $ A / m $ ^ {2} $ 。该结果还表明,这种非热波动噪声将在不久的将来成为HDD的严重问题。

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