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Spin-Stand Based Measurement of 1-D Head Response Function

机译:基于旋转的1-D头响应功能测量

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Recently, an efficient spin-stand based imaging technique for viewing magnetization patterns written on hard disk platters has been developed [1]. This technique requires the intersymbol interference (ISI) removal from raw read-back images. This removal can be accomplished by using the response function characterization of giant magnetoresistive heads [2]. The precise measurement of the head response function can be of great importance in magnetic recording as well. This paper presents a new approach to head response function measurement. The central idea of this measurement is based on the fact that the readback signal is a convolution of the head response function and the virtual magnetic charge distribution corresponding to magnetization patterns recorded on the media. For this reason, it is apparent that for a single isolated transition the readback signal will emulate the response function when the width of the isolated transition becomes much narrower than the width of the response function itself and the corresponding charge distribution can be modelled by the Dirac δ-function. This implies that as the isolated transition is progressively narrowed, the readback signal should converge to the actual head response function. This has been confirmed by numerical simulations as well as by experimental studies that are presented below.
机译:最近,已经开发了一种用于观察写在硬盘盘上写入的磁化模式的有效自旋旋转的成像技术[1]。该技术要求从原始读回图像中删除偶尔ymbol干扰(ISI)。通过使用巨型磁阻头的响应功能表征来实现这种去除[2]。头部响应功能的精确测量也可以在磁记录中具有重要意义。本文提出了一种新的头响应函数测量方法。该测量的中心思想基于倒回信号是头响应功能的卷积和与记录在介质上的磁化模式相对应的虚拟磁电荷分布。因此,显而易见的是,对于单个隔离的转换,当隔离的转换的宽度比响应函数本身的宽度变窄时,返回信号将模拟响应函数,并且可以通过狄拉克建模相应的电荷分布Δ函数。这意味着随着隔离的转换逐渐变窄,回读信号应收敛到实际的头响应功能。这已经通过数值模拟以及以下实验研究证实了这一点。

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