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Modeling of the write and read back performances of hexagonal Ba-ferrite particulate media for high density tape recording

机译:用于高密度磁带记录的六角形钡铁氧体颗粒介质的写和读性能建模

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摘要

In this study, the signal-to-noise ratio (SNR) performances of longitudinally, randomly, and perpendicularly oriented particles, based on hexagonal barium ferrite (h-BaFe) platelets with an average volume of 2400 nm3 have been studied as a function of the recording head to media distance by numerical micromagnetic simulations. The distances from the write head to media and from the read head to media were varied independently. For a fixed read distance and varied writing distances, the SNR was decreasing in larger write distance. An optimum write distance of 40 and 50 nm was found for the longitudinally oriented media and the perpendicularly oriented media, respectively. The optimum write distance for longitudinally oriented media, 40 nm, resulted in the local minimum SNR for the perpendicularly oriented media. In most write distances the perpendicularly oriented media show the outstanding best performance, but near the write distance of 40 nm the longitudinally oriented media work as good as the perpendicularly oriented media. In a fixed write distance with various read distances, the SNR was almost constant in each media whereas the average signal amplitude was exponentially decayed in larger read head to media distance. The best SNR was found in the perpendicularly oriented media at write head to media distance d_(write)=20 nm and read head to media distance d_(read)=40 nm. The best SNR value is 11.9 and 24.4 dB in time domain and frequency domain, respectively.
机译:在这项研究中,研究了基于平均体积为2400 nm3的六方钡铁氧体(h-BaFe)血小板的纵向,随机和垂直取向颗粒的信噪比(SNR)性能。通过数值微磁模拟,记录头到介质的距离。从写头到介质以及从读头到介质的距离是独立变化的。对于固定的读取距离和变化的写入距离,SNR随写入距离的增加而降低。对于纵向取向的介质和垂直取向的介质,发现最佳写入距离分别为40和50 nm。纵向取向介质的最佳写入距离为40 nm,导致垂直取向介质的局部最小SNR。在大多数写入距离中,垂直方向的介质显示出出色的最佳性能,但是在40 nm的写入距离附近,纵向方向的介质的工作效果与垂直方向的介质一样好。在具有各种读取距离的固定写入距离中,每种介质的SNR几乎恒定,而在较大的读取头到介质的距离中,平均信号幅度呈指数下降。在垂直定向的介质中,在写入头到介质的距离d_(write)= 20 nm和读取头到介质的距离d_(read)= 40 nm处发现了最佳SNR。最佳SNR值在时域和频域分别为11.9 dB和24.4 dB。

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