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    • 2. 发明授权
    • Method for thermally-assisted recording on a magnetic recording disk
    • 在磁记录盘上进行热辅助记录的方法
    • US06834026B2
    • 2004-12-21
    • US10626362
    • 2003-07-23
    • Eric E. FullertonStefan MaatJan-Ulrich Thiele
    • Eric E. FullertonStefan MaatJan-Ulrich Thiele
    • G11B1100
    • G11B5/66G11B5/82G11B2005/0002G11B2005/0021Y10T428/24802
    • A magnetic recording medium for thermally-assisted recording is a bilayer of a high-coercivity, high-anisotropy ferromagnetic material like FePt and a switching material like FeRh or Fe(RhM) (where M is Ir, Pt, Ru, Re or Os) that exhibits a switch from antiferromagnetic to ferromagnetic at a transition temperature less than the Curie temperature of the high-coercivity material. The high-coercivity recording layer and the switching layer are exchange coupled ferromagnetically when the switching layer is in its ferromagnetic state. To write data the bilayer medium is heated above the transition temperature of the switching layer. When the switching layer becomes ferromagnetic, the total magnetization of the bilayer is increased, and consequently the switching field required to reverse a magnetized bit is decreased without lowering the anisotropy of the recording layer. The magnetic bit pattern is recorded in both the recording layer and the switching layer. When the media is cooled to below the transition temperature of the switching layer, the switching layer becomes antiferromagnetic and the bit pattern remains in the high-anisotropy recording layer.
    • 用于热辅助记录的磁记录介质是诸如FePt的高矫顽力,高各向异性铁磁材料和诸如FeRh或Fe(RhM)(其中M是Ir,Pt,Ru,Re或Os)的开关材料的双层, 其在低于高矫顽力材料的居里温度的转变温度下表现出从反铁磁转变为铁磁。 当高矫顽力记录层和开关层在开关层处于其铁磁状态时,铁磁性交换耦合。 为了写入数据,双层介质被加热到开关层的转变温度之上。 当开关层成为铁磁性时,双层的总磁化强度增加,因此在不降低记录层的各向异性的情况下降低了使磁化位反转所需的切换场。 磁记录层记录在记录层和切换层中。 当介质冷却到切换层的转变温度以下时,开关层变为反铁磁性,并且位图形保留在高各向异性记录层中。
    • 8. 发明授权
    • Perpendicular magnetic recording medium and system with low-curie-temperature multilayer for heat-assisted writing and/or reading
    • 垂直磁记录介质和具有低Curie-temperature多层的系统,用于热辅助写入和/或读取
    • US07862912B2
    • 2011-01-04
    • US12041930
    • 2008-03-04
    • Olav HellwigBruce David TerrisJan-Ulrich Thiele
    • Olav HellwigBruce David TerrisJan-Ulrich Thiele
    • G11B5/66
    • G11B5/66Y10T428/1171
    • A perpendicular magnetic recording medium, usable for either continuous or patterned media, has a recording layer structure (RLS) of first and second perpendicular magnetic layers (PM1, PM2) and an antiferromagnetically coupling (AFC) layer and a ferromagnetic switching layer (SWL) between PM1 and PM2. The magnetic recording system uses heat to assist in the reading and/or writing of data. The SWL is a Co/Ni multilayer with a Curie temperature (TC-SWL) less than the Curie temperatures of PM1 and PM2. At room temperature, there is ferromagnetic coupling between SWL and the upper ferromagnetic layer (PM2) so that the magnetizations of SWL and PM2 are parallel, and antiferromagnetic coupling between SWL and the lower ferromagnetic layer (PM1) across the AFC layer so that the magnetization of PM1 is aligned antiparallel to the magnetizations of SWL and PM2. When the SWL is heated to above TC-SWL it is no longer ferromagnetic, there is no antiferromagnetic coupling between the SWL and PM1 across the AFC layer, and the magnetizations of PM1 and PM2 become aligned parallel.
    • 可用于连续或图案化介质的垂直磁记录介质具有第一和第二垂直磁性层(PM1,PM2)和反铁磁耦合(AFC)层和铁磁性切换层(SWL)的记录层结构(RLS) PM1和PM2之间。 磁记录系统使用热量来辅助读取和/或写入数据。 SWL是具有低于PM1和PM2的居里温度的居里温度(TC-SWL)的Co / Ni多层。 在室温下,在SWL和上铁磁层(PM2)之间存在铁磁耦合,使得SWL和PM2的磁化平行,并且SWL与AFC层之间的下铁磁层(PM1)之间的反铁磁耦合,使得磁化 的PM1与SWL和PM2的磁化反平行排列。 当SWL被加热到高于TC-SWL时,它不再是铁磁性的,在AFC层之间的SWL和PM1之间没有反铁磁耦合,并且PM1和PM2的磁化平行排列。
    • 9. 发明申请
    • PERPENDICULAR MAGNETIC RECORDING MEDIUM AND SYSTEM WITH LOW-CURIE-TEMPERATURE MULTILAYER FOR HEAT-ASSISTED WRITING AND/OR READING
    • 具有低温度温度的多层磁性记录介质和系统,用于热辅助写入和/或读取
    • US20090226762A1
    • 2009-09-10
    • US12041930
    • 2008-03-04
    • Olav HellwigBruce David TerrisJan-Ulrich Thiele
    • Olav HellwigBruce David TerrisJan-Ulrich Thiele
    • G11B5/65
    • G11B5/66Y10T428/1171
    • A perpendicular magnetic recording medium, usable for either continuous or patterned media, has a recording layer structure (RLS) of first and second perpendicular magnetic layers (PM1, PM2) and an antiferromagnetically coupling (AFC) layer and a ferromagnetic switching layer (SWL) between PM1 and PM2. The magnetic recording system uses heat to assist in the reading and/or writing of data. The SWL is a Co/Ni multilayer with a Curie temperature (TC-SWL) less than the Curie temperatures of PM1 and PM2. At room temperature, there is ferromagnetic coupling between SWL and the upper ferromagnetic layer (PM2) so that the magnetizations of SWL and PM2 are parallel, and antiferromagnetic coupling between SWL and the lower ferromagnetic layer (PM1) across the AFC layer so that the magnetization of PM1 is aligned antiparallel to the magnetizations of SWL and PM2. When the SWL is heated to above TC-SWL it is no longer ferromagnetic, there is no antiferromagnetic coupling between the SWL and PM1 across the AFC layer, and the magnetizations of PM1 and PM2 become aligned parallel.
    • 可用于连续或图案化介质的垂直磁记录介质具有第一和第二垂直磁性层(PM1,PM2)和反铁磁耦合(AFC)层和铁磁性切换层(SWL)的记录层结构(RLS) PM1和PM2之间。 磁记录系统使用热量来辅助读取和/或写入数据。 SWL是具有低于PM1和PM2的居里温度的居里温度(TC-SWL)的Co / Ni多层。 在室温下,在SWL和上铁磁层(PM2)之间存在铁磁耦合,使得SWL和PM2的磁化平行,并且SWL与AFC层之间的下铁磁层(PM1)之间的反铁磁耦合,使得磁化 的PM1与SWL和PM2的磁化反平行排列。 当SWL被加热到高于TC-SWL时,它不再是铁磁性的,在AFC层之间的SWL和PM1之间没有反铁磁耦合,并且PM1和PM2的磁化平行排列。
    • 10. 发明授权
    • Thermally-assisted perpendicular magnetic recording system and head
    • 热辅助垂直磁记录系统和头
    • US07068453B2
    • 2006-06-27
    • US10789907
    • 2004-02-27
    • Bruce David TerrisJan-Ulrich Thiele
    • Bruce David TerrisJan-Ulrich Thiele
    • G11B5/02
    • G11B5/315G11B5/1278G11B5/314G11B5/3967G11B2005/0021
    • A thermally-assisted perpendicular magnetic recording head includes a write pole tip for generating a magnetic write field in the perpendicular magnetic recording layer, a magnetic shield that confines the write field essentially to the data track to be recorded, an electrically resistive heater for heating the recording layer in the presence of the write field, and a return pole. The write pole tip width essentially defines data track width and is substantially surrounded by the magnetic shield. The shield may include side shields with ends located on opposite sides of the write pole tip and a trailing shield having an end spaced from the write pole tip. The resistive heater is wider than the data track and heats both the data track and adjacent tracks, but thermally-assisted magnetic recording occurs only in the data track because the confined magnetic field in the adjacent tracks is less than the required write field.
    • 热辅助垂直磁记录头包括用于在垂直磁记录层中产生磁写入场的写磁极端头,将写磁场基本上限制于要记录的数据磁道的磁屏蔽,用于加热 在存在写字段的情况下,记录层和返回极。 写极尖宽度基本上限定数据磁道宽度并且基本上被磁屏蔽包围。 屏蔽件可以包括端部位于写入磁极尖端的相对侧上的侧部屏蔽件,以及具有与写入磁极尖端间隔开的端部的后屏蔽件。 电阻加热器比数据轨道宽,并加热数据轨道和相邻轨道,但热辅助磁记录仅发生在数据轨道中,因为相邻轨道中的受限磁场小于所需的写入场。