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Minimizing The Effect Of Noise In High-Speed Reversal Of A Magnetic Dipole

机译:最小化磁性偶极高速逆转噪声的影响

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The effect of noise on the reversal of a magnetic dipole is investigated on the basis of computer simulation of the Landau-Lifshits equation. It is demonstrated that at the reversal by the pulse with sinusoidal shape, there exists the optimal duratio n, which minimizes the mean reversal time (MRT) and the standard deviation (SD, jitter). Both the MRT and the jitter significantly depend on the angle θ between the reversal magnetic field and the anisotropy axis. At the optimal angle the MRT can be decreased by a factor of 7 for damping α=T and up to 2 orders of magnitude for α=0.01, and the jitter can be decreased from 1 to 3 orders of magnitude in comparison with the uniaxial symmetry case. It has been demonstrated that fluctuations can not only decrease the reversal time, as it has been known before for the magnetic systems and is correct for small angles only, but it can also significantly, up to the factor of two, increase the reversal time.
机译:基于Landau-Lifhits方程的计算机模拟,研究了噪声对磁性偶极逆转的影响。据证明,在具有正弦形状的脉冲的逆转,存在最佳的杜拉替省N,其最小化平均反转时间(MRT)和标准偏差(SD,抖动)。 MRT和抖动都显着取决于反转磁场和各向异性轴之间的角度θ。在最佳角度下,MRT可以减少7倍,用于阻尼α= T,α= 0.01的最多2个级,并且与单轴对称相比,抖动可以从1到3个数量级降低案件。已经证明,波动不仅可以减少逆转时间,因为它以前已知磁性系统并且仅对小角度正确,但也可以显着,直到两倍,增加了逆转时间。

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