Possibilities of Fe-Pt media for ultra-high density perpendicular magnetic recording

T. Suzuki, K. Ouchi
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Abstract

Perpendicular recording is fundamentally characterized by demagnetizing field free transitions. This principal feature is a great advantage not only for granular type media but also laterally exchange-coupled (LEC) film media with enhanced wall-pinning effects. Recently, it has been first reported that larger M/sub s/ and K/sub u/, high density pinning sites, and thinner recording layer of LEC film media are effective for coexistence of a larger hysteresis loop slope parameter, /spl alpha/, and a smaller domain size. Thus, higher recording and reproducing resolutions and lower media noise are expected to be realized by the media. Since an ordered Fe-Pt alloy of L1/sub 0/ phase satisfies the requirements for the LEC film media, we discuss the potential of thinner Fe-Pt film media for perpendicular magnetic recording.
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铁铂介质用于超高密度垂直磁记录的可能性
垂直记录的基本特征是无退磁场跃迁。这一主要特性不仅对颗粒型介质,而且对具有增强钉壁效应的横向交换耦合(LEC)薄膜介质都具有很大的优势。近年来,研究首次发现,较大的M/sub s/和K/sub u/、高密度的钉钉位点和较薄的LEC薄膜介质记录层有利于较大的磁滞回线斜率参数/spl alpha/和较小的畴尺寸共存。因此,期望该介质能够实现更高的记录和再现分辨率以及更低的介质噪声。由于L1/sub 0/相的有序Fe-Pt合金满足LEC薄膜介质的要求,我们讨论了更薄的Fe-Pt薄膜介质用于垂直磁记录的潜力。
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