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Media and Tip Trajectory Optimization for High-Density MFM-Based Perpendicular Recording

机译:基于MFM的高密度垂直记录的媒体和笔尖轨迹优化

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In this paper, we investigate the feasibility of using a magnetic force microscopy scheme for recording and retrieving magnetic marks for ultrahigh-density, ultralow power applications. We will address the main design considerations while designing such a system. Then, using the impulse-response and inverse-convolution technique, we deduce a novel tip trajectory for the optimum recording process. We will also apply extensive optimization for a Co{sub}xCr{sub}yPt{sub}(1-x-y) perpendicular media structure to maximize the signal-to-noise ratio (SNR). An areal density of up to 0.3 Tb/in{sup}2 is shown to be achievable with thermally stable magnetic marks and a SNR of 20-25 dB in the existence of additional electronic noise.
机译:在本文中,我们研究了使用磁力显微镜方案记录和检索超高密度,超低功率应用中的磁性标记的可行性。在设计这样的系统时,我们将解决主要的设计注意事项。然后,使用冲激响应和逆卷积技术,推导了用于最佳记录过程的新型尖端轨迹。我们还将对Co {sub} xCr {sub} yPt {sub}(1-x-y)垂直介质结构进行广泛的优化,以最大程度地提高信噪比(SNR)。在存在额外的电子噪声的情况下,具有热稳定的磁标记和SNR为20-25 dB的情况下,可以实现高达0.3 Tb / in {sup} 2的面密度。

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