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Three-dimensional optical disk data storage via the localized alteration of a format hologram

机译:通过格式全息图的局部更改来存储三维光盘数据

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Three-dimensional optical data storage is demonstrated in an initially homogenous volume by first recording a reflection grating in a holographic photopolymer. This causes the entire volume to be weakly reflecting to a confocal read/write head. Superposition of two or three such gratings with slightly different k-vectors creates a track and layer structure that specialized servo detection optics can use to lock the focus to these deeply-buried tracks. Writing is accomplished by locally modifying the reflectivity of the preexisting hologram. This modification can take the form of ablation, inelastic deformation via heating at the focus, or erasure via linear or two-photon continued polymerization in the previously unexposed fringes of the hologram. Storage by each method is demonstrated with up to eight data layers separated by as little as 12 microns. (c) 2008 Optical Society of America.
机译:通过首先在全息光敏聚合物中记录反射光栅,以初始均匀的体积展示了三维光学数据存储。这导致整个体积微弱地反射到共焦读/写头。两个或三个具有略微不同的k矢量的此类光栅的叠加形成了轨道和层结构,专用的伺服检测光学系统可使用该结构将焦点锁定在这些深埋的轨道上。通过局部修改预先存在的全息图的反射率来完成书写。这种修改可以采取烧蚀,在焦点处加热引起的非弹性变形或在全息图的先前未曝光的条纹中通过线性或双光子连续聚合进行擦除的形式。通过每种方法进行存储时,最多可显示8个数据层,每个数据层之间的间隔仅为12微米。 (c)2008年美国眼镜学会。

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