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Study of Two-Dimensional Magnetic Recording System Including Micromagnetic Writer

机译:含微磁记录器的二维磁记录系统的研究

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摘要

Micromagnetic writing on 8 nm grains and readback with various readers have been studied. For a conventional writer recording a pseudorandom binary sequence with 2 Tb/in channel bit density, user densities of 1.52 and 1.09 Tb/in could be achieved with a rotated single sense head (RSH) and a normally oriented single head (NSH), respectively, using 2 nm sampling period, a minimum mean squared error equalizer, and a Viterbi detector. Simulation indicated that an RSH with multiple scans and 2-D equalization provided better resistance to a skew angle of 15° than an NSH. An optimized shingled writer was proposed; simulation indicated that an RSH and rotated head array could reach a user areal density of 3.76 and 4.52 Tb/in for two grains per channel bit, which was close to the predicted maximum user areal density (4.66 Tb/in) for this grain size obtained with an ideal writer and reader.
机译:已经研究了在8 nm晶粒上的微磁写入和各种读取器的回读。对于记录通道比特密度为2 Tb / in的伪随机二进制序列的常规写入器,分别使用旋转的单传感头(RSH)和法向定向的单头(NSH)可以分别实现1.52和1.09 Tb / in的用户密度,使用2 nm采样周期,最小均方误差均衡器和Viterbi检测器。仿真表明,与NSH相比,具有多次扫描和2D均衡的RSH可以更好地抵抗15°的偏斜角。提出了一种优化的叠瓦作家。仿真表明,对于每通道位两个晶粒,RSH和旋转头阵列可以达到3.76和4.52 Tb / in的用户面密度,接近于针对该晶粒尺寸获得的最大预测用户面密度(4.66 Tb / in)与理想的作家和读者。

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