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    • 2. 发明授权
    • Magneto-optical recording medium
    • 磁光记录介质
    • US06802073B1
    • 2004-10-05
    • US09762440
    • 2003-04-29
    • Koyata TakahashiToshio InaseKeiichiro Nishizawa
    • Koyata TakahashiToshio InaseKeiichiro Nishizawa
    • G11B11105
    • G11B11/10584
    • Disclosed are magneto-optical recording media including at least a reflection layer, a recording layer and a dielectric layer laminated on a substrate in this order, wherein the thickness of the dielectric layer is not less than 140 nm or wherein the dielectric layer is provided by the lamination of upper dielectric layer and lower dielectric layer in which the thermal conductivity of the upper dielectric layer is higher than that of the lower dielectric layer. By arranging the thickness of the dielectric layer in a specific range, the surface roughness of a media in not more than 1.5 nm, and providing a reflection layer composed of a noble metal alloy, achieved is a magneto-optical recording medium able to record constantly in near-field magneto-optical recording, suitable for narrow track pitch, and having excellent SNR, resolution, and recording sensitivity.
    • 公开了依次包括至少层叠在基板上的反射层,记录层和电介质层的磁光记录介质,其中介电层的厚度不小于140nm,或者介电层由 上介电层和下电介质层的叠层,其中上电介质层的导热率高于下电介质层的导热率。 通过将介电层的厚度设置在特定范围内,介质的表面粗糙度不大于1.5nm,并且提供由贵金属合金构成的反射层,是能够恒定记录的磁光记录介质 在近场磁光记录中,适用于窄轨道间距,并且具有优异的SNR,分辨率和记录灵敏度。
    • 7. 发明授权
    • Optical recording medium having a recording/reproducing area with a shaped region
    • 具有记录/再现区域的成形区域的光学记录介质
    • US06584067B2
    • 2003-06-24
    • US09796792
    • 2001-03-02
    • Noriaki OshimaHideki OonoKeiichiro Nishizawa
    • Noriaki OshimaHideki OonoKeiichiro Nishizawa
    • G11B582
    • B82Y10/00G11B7/007G11B7/121G11B7/122G11B7/24097G11B7/26G11B23/0035
    • An optical recording medium wherein a land and a groove are formed in both front and rear surfaces of a circular disk-like substrate respectively, at least a recording layer and a dielectric layer are formed on the surfaces of the substrate, and a hub is provided in only one of the surfaces and recording/reproducing are conducted by using a flying optical head, the optical recording medium being characterized in that in a state that the medium is supported by the hub so that the hub-attached surface directs downward, and in a region from the innermost periphery to L/3, where L is a distance from the innermost periphery to the outermost periphery of a recording/reproducing area, the center of curvature in a radial direction of that region exists at an opposite side with respect to the hub-attached surface of the optical recording medium, whereby the optical recording medium of high reliability wherein the distance between the flying optical head floating above the surface of the recording medium and the surface of the recording medium can be kept constant; uniform recording/reproducing signals can be obtained, and head crushing seldom occurs.
    • 一种光盘记录介质,其中在圆盘状基板的前表面和后表面分别形成有焊盘和凹槽,至少记录层和电介质层形成在基板的表面上,并且设置有集线器 在只有一个表面和记录/再现通过使用飞行光学头进行的情况下,光学记录介质的特征在于,在介质由轮毂支撑使得轮毂附接表面向下引导的状态下 从最内周到L / 3的区域,其中L是从记录/再现区域的最内周到最外周的距离,该区域的径向方向上的曲率中心相对于 光记录介质的轮毂安装表面,由此可靠的光学记录介质,其中浮动光学头在记录表面之上的距离 并且记录介质的表面可以保持恒定; 可以获得均匀的记录/再现信号,并且很少发生头部破碎。