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Reducing media noise of perpendicular magnetic recording tape for over-50 TB class data cartridge

机译:减少垂直磁记录带上的介质噪音,用于超过50 TB类数据盒

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To reduce medium noise inherent in a perpendicular magnetic recording tape, which is deposited by facing targets sputtering, we have examined an epitaxial double-layered structure consisting of a soft magnetic underlayer (SUL), bcc-FeCoB/fcc-NiFe/Si/bcc-FeCoB, on a 4.5 μm para-aromatic polyamide (aramid) film. An epitaxial soft magnetic bilayer reduces broadband noise by 5.6 dB at 337 kilo fluxchanges per inch (kfci) compared to a single SUL medium (Tape S). This is due to the reduction in the low-frequency noise, which originates from the domain walls of the SUL. Improvement of the crystal orientation of the magnetic layer hcp-CoPtCr-SiO_2 and the intermediate layer hcp-Ru by inserting a fcc-NiFe spacer in laminated SULs extends the roll-off curve toward high linear density. When each SUL layer of the bilayer was made thinner, from 25 nm (Tape D2) to 10 nm (Tape D1), the medium noise decreased, improving the signal-to-noise ratio by 8.6 dB at 337 kfci compared to Tape S. In a high resolution playback test of Tape D1, an areal density of 45.0 gigabits per square inch (Gb/in.2) was confirmed. Achieved areal density means the capability of an over-50 terabyte (TB) capacity for a typical linear-formatted data cartridge.
机译:为了减少通过面对靶溅射沉积的垂直磁记录带中固有的中噪声,我们研究了由软磁下层(SUL),BCC-FECOB / FCC-NIFE / SI / BCC组成的外延双层结构-FecoB,在4.5μm甲芳族聚酰胺(Aramid)膜上。与单个SUL培养基(胶带S)相比,外延软磁双层将宽带噪声通过337千米(KFCI)降低5.6 dB。这是由于低频噪声的降低,该低频噪声来自来自SUL的畴壁。通过插入层压的SURS中的FCC-NIFE间隔物通过插入磁性层HCP-COPTCR-SIO_2和中间层HCP-RU的改进延伸朝向高线性密度的折衷曲线。当双层的每个SUL层较薄时,从25nm(带D2)至10nm(带D1),中噪声降低,与磁带S相比,在337kFCI下提高8.6dB的信噪比。在带D1的高分辨率播放试验中,确认了每平方英寸(GB / In.2)的45.0千兆位的面密度。实现的面密度意味着典型的线性格式数据盒的超过50tbEyte(TB)容量的能力。

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