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    • 34. 发明申请
    • Magnetic recording media for tilted recording
    • 用于倾斜记录的磁记录介质
    • US20060002026A1
    • 2006-01-05
    • US10882881
    • 2004-06-30
    • Barry StipeJan-Ulrich Thiele
    • Barry StipeJan-Ulrich Thiele
    • G11B11/00B32B3/02G11B5/82
    • G11B5/667G11B5/012G11B5/1278G11B5/65G11B5/7325G11B5/743G11B5/82G11B5/84
    • A recording medium according to the invention has a magnetic recording layer with an L10 magnetic material deposited with a (111) preferred orientation and soft underlayer (SUL). One set of embodiments includes an intermediate layer (seed layer or underlayer) between the L10 media and SUL. The intermediate layer can be a close-packed surface structure (triangular lattice) to promote (111) orientation of the L10 media. For example, the intermediate layer can be a (111) oriented, face-centered-cubic (fcc) material such as platinum, palladium, iridium, rhodium, FePt, FePd, or FePdPt alloys; or the intermediate layer can be a (100) oriented hexagonal-close-packed (hcp) material such as ruthenium, rhenium, or osmium. Alternatively, the intermediate layer can be an amorphous material. The L10 recording layer of the invention can be deposited with a matrix material to form grain boundaries and provide magnetic isolation of the grains of L10 material.
    • 根据本发明的记录介质具有具有沉积有(111)优选取向和软底层(SUL)的L 1 O 3磁性材料的磁记录层。 一组实施例包括在L 1 O 2介质和SUL之间的中间层(种子层或底层)。 中间层可以是紧密堆积的表面结构(三角形晶格),以促进L 1 O 3介质的(111)取向。 例如,中间层可以是(111)取向的面心立方(fcc)材料,例如铂,钯,铱,铑,FePt,FePd或FePdPt合金; 或中间层可以是(100)取向的六方密堆积(hcp)材料,例如钌,铼或锇。 或者,中间层可以是无定形材料。 本发明的L 1 O 0记录层可以用基质材料沉积以形成晶界并提供L 1 O 3材料的晶粒的磁性隔离。
    • 36. 发明授权
    • Thermally assisted magnetic recording system and method of writing using magnetic and thermal gradients
    • 热辅助磁记录系统和使用磁和热梯度的写入方法
    • US06950260B2
    • 2005-09-27
    • US09874673
    • 2001-06-04
    • Kevin Robert CoffeyRobert Edward Fontana, Jr.Jan-Ulrich Thiele
    • Kevin Robert CoffeyRobert Edward Fontana, Jr.Jan-Ulrich Thiele
    • G11B5/02G11B5/55G11B5/596G11B27/36
    • G11B5/02G11B5/5521G11B5/59683
    • A magnetic recording system is provided having a write head employing a combination of magnetic write field gradient and thermal gradient to write data on a ‘thermal spring’ magnetic recording media. The write head comprises a magnetic element using a write current to induce a magnetic write field at the magnetic media and a thermal element using a very small aperture laser to heat a portion of the media. The thermal spring magnetic media comprises [comprises] first and second stacks providing two exchange coupled ferromagnetic layers having different Curie temperatures [The first stack has a high magneto-crystalline anisotropy, a relatively low saturation magnetization and a low Curie temperature.] [The second stack has a relatively low magneto-crystalline anisotropy, a high saturation magnetization and a high Curie temperature.] The magnetic field gradient and the thermal gradient are arranged to substantially overlap at the trailing edge of the heated portion of the magnetic media allowing data at high density with high thermal stability to be recorded on the rapidly cooling thermal spring magnetic recording media.
    • 提供磁记录系统,其具有采用磁写场梯度和热梯度的组合的写头,以在“温度弹簧”磁记录介质上写入数据。 写头包括使用写入电流以在磁性介质上引起磁写入场的磁性元件,以及使用非常小的孔径激光器加热介质的一部分的热元件。 热弹簧磁介质包括[包括]第一和第二堆叠,提供具有不同居里温度的两个交换耦合铁磁层[第一堆叠具有高磁晶各向异性,相对低的饱和磁化强度和低居里温度]。[第二 堆叠具有相对较低的磁晶各向异性,高饱和磁化强度和高居里温度。]磁场梯度和热梯度被布置成在磁介质的加热部分的后缘处基本上重叠,允许高数据 具有高热稳定性的密度被记录在快速冷却的热弹簧磁记录介质上。