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OPTICAL DATA CARRIER EMPLOYING FABRY-PEROT RECORDING PRINCIPLE

机译:光学数据载体采用Fabry-Perot记录原理

摘要

The present invention is in the field of optical recording media, and is directed to an optical recording medium which comprises the following layers; a) a grooved transparent substrate (1), superposed by b) a recording layer comprising a partial mirror (2) of a material having a high complex index of refraction which is not within the pentagon defined by the vertices 7.15 - i3.93, 7.15 - i5.85, 8.96 - 6.28, 9.56 - i5.90, and 8.14 - i3.77 in the n,k plane, superposed by a buffer layer (3) comprising a nonliquid-crystalline high-molecular weight material and optionally a dye, superposed by a thick reflective layer (4), together forming a Fabry-Perot wherein the thickness (d) of the buffer layer within the grooves is set so that the reflection of the medium is in the high reflective state, optionally superposed by c) a protective coating (5). By virtue of the partial mirror, the buffer layer, and the thick reflective layer a Fabry-Perot etalon is created. Information can be written by deformation of one or more of the partial mirror, the buffer layer, the thick reflective layer, or the substrate. The deformation effects change or destroy the Fabry-Perot, and a decrease in reflection is created. As deformation effects are used for writing, a non-liquid crystalline high-molecular weight material can be used in the buffer layer. The tracking (keeping the writing laser within the grooves) can take place by employing the difference in reflected amplitude or phase of the partial mirror/substrate interface within and outside the groove.
机译:本发明属于光学记录介质领域,并且涉及一种包括以下层的光学记录介质。 a)带凹槽的透明基板(1),由b)记录层组成,该记录层包括部分反射镜(2),该部分反射镜的材料的复合折射率高,不在顶点7.15至i3.93所定义的五边形之内,在n,k平面中的7.15-i5.85、8.96-6.28、9.56-i5.90和8.14-i3.77,由缓冲层(3)叠加,该缓冲层包括非液晶高分子材料和可选的染料与厚的反射层(4)叠加在一起,共同形成Fabry-Perot,其中设置凹槽内缓冲层的厚度(d)以使介质的反射处于高反射状态,并可选地与c)保护涂层(5)。借助于局部反射镜,缓冲层和厚的反射层,形成了法布里-珀罗标准具。可以通过部分镜,缓冲层,厚反射层或衬底中的一个或多个的变形来写入信息。变形效果会改变或破坏Fabry-Perot,并导致反射减少。由于使用变形效果进行书写,因此在缓冲层中可以使用非液晶高分子材料。跟踪(将写入激光保持在凹槽内)可以通过利用凹槽内外的部分镜/基板界面的反射幅度或相位的差异来进行。

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