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    • 1. 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。
    • 2. 发明授权
    • Magneto-optical recording medium having a transfer control layer
    • 具有转印控制层的磁光记录介质
    • US06791908B2
    • 2004-09-14
    • US10308791
    • 2002-12-03
    • Motoyoshi MurakamiTakeshi SakaguchiYasumori Hino
    • Motoyoshi MurakamiTakeshi SakaguchiYasumori Hino
    • G11B1100
    • G11B11/10578G11B11/10515G11B11/10582G11B11/10584G11B11/10586
    • A magneto-optical recording medium, including a recording layer, a transfer control layer magnetically coupled to the recording layer, and a reproduction layer. The recording layer includes a recording magnetic domain in which information is recorded by a magnetization direction vertical to the surface of the film. The reproduction layer includes a reproduction magnetic domain in which information in the recording layer is transferred and formed as a magnetization direction by magnetic coupling. The direction of magnetization of the recording magnetic domain of the recording layer and the direction of magnetization of the transfer control layer corresponding to the recording magnetic domain are in opposite directions in at least part of the range of temperatures less than a transfer temperature where the reproduction magnetic domain is transferred to the reproduction layer. The Curie point temperature of the transfer control layer is higher than this transfer temperature.
    • 包括记录层,磁耦合到记录层的转移控制层和再现层的磁光记录介质。 记录层包括通过垂直于胶片表面的磁化方向记录信息的记录磁畴。 再现层包括其中记录层中的信息通过磁耦合传送并形成为磁化方向的再现磁畴。 记录层的记录磁畴的磁化方向和与记录磁畴相对应的转印控制层的磁化方向在至少部分小于转印温度的范围内的方向上处于相反的方向 磁畴被传送到再现层。 转移控制层的居里点温度高于此转印温度。
    • 6. 发明授权
    • Magneto-optical recording medium having multiple magnetic layers capable of reducing reproducing laser power
    • 具有能够减少再现激光功率的多个磁性层的磁光记录介质
    • US06721238B2
    • 2004-04-13
    • US09996418
    • 2001-11-29
    • Yasuhito TanakaYoshihiro Muto
    • Yasuhito TanakaYoshihiro Muto
    • G11B1100
    • G11B11/10586G11B11/10584Y10T428/1121
    • A magneto-optical recording medium for recording and reproducing carriers by laser beam irradiation includes a first magnetic layer which is magnetized in the in-plane direction at room temperature and is perpendicularly magnetized at a predetermined temperature T1 or more; a second magnetic layer which is in contact with the first magnetic layer, has a Curie temperature Tc2 higher than the predetermined temperature T1, and has in-plane magnetic anisotropy up to the Curie temperature Tc2; a third magnetic layer which has a Curie temperature Tc3 higher than the predetermined temperature T1 and has perpendicular magnetic anisotropy at least in a predetermined range of a temperature distribution of the magneto-optical recording medium during laser beam irradiation when reproducing; and a rare earth metal layer formed between the third magnetic layer and the second magnetic layer.
    • 用于通过激光束照射来记录和再现载体的磁光记录介质包括在室温下在面内方向被磁化并在预定温度T1或更高的温度下垂直磁化的第一磁性层; 与第一磁性层接触的第二磁性层具有高于预定温度T1的居里温度Tc2,具有高达居里温度Tc2的面内磁各向异性; 具有比预定温度T1高的居里温度Tc3的第三磁性层,并且在再现时在激光束照射期间至少在磁光记录介质的温度分布的预定范围内具有垂直的磁各向异性; 以及形成在第三磁性层和第二磁性层之间的稀土金属层。
    • 7. 发明授权
    • Domain wall displacement magneto-optical storage medium, and method for reproducing thereof
    • 畴壁位移磁光存储介质及其再现方法
    • US06707767B2
    • 2004-03-16
    • US09982920
    • 2001-10-22
    • Tomoyuki Hiroki
    • Tomoyuki Hiroki
    • G11B1100
    • G11B11/10515G11B11/10593
    • A magneto-optic recording medium in which information is reproduced while a recording magnetic domain is enlarged by displacing a domain wall based on a temperature distribution formed by a beam of light and having a maximum temperature Tr. The recording medium comprises a reproducing layer in which a domain wall is displaced, a recording layer for holding a recording magnetic domain corresponding to information, and a cutoff layer disposed between the reproducing layer and the recording layer and having a Curie temperature lower than those of the reproducing layer and recording layer. The recording medium satisfies the following condition; (Tr−RT)/(Tc2−RT)≧1.8 where Tc2: Curie temperature of the cutoff layer, and RT: room temperature.
    • 一种磁光记录介质,其中通过基于由光束形成的具有最大温度Tr的温度分布来移位畴壁而在记录磁畴被放大的同时再现信息。 记录介质包括其中畴壁被移位的再现层,用于保持对应于信息的记录磁畴的记录层,以及设置在再现层和记录层之间的具有居里温度的居里温度 再现层和记录层。 记录介质满足以下条件:T c2:截止层的居里温度,RT:室温。