Dubois Marc, Shi Xiaolei, Erben Christoph, Longley Kathryn L, Boden Eugene P, Lawrence Brian L
General Electric Global Research, 1 Research Circle, Niskayuna, New York 12309, USA.
Opt Lett. 2005 Aug 1;30(15):1947-9. doi: 10.1364/ol.30.001947.
A three-dimensional optical data storage system that combines a new recording material with a microholographic data format in which data are stored as single-bit microholograms is presented. This format offers less sensitivity to environmental conditions than the page-based holographic approach in addition to an increased compatibility with current storage technologies. The new recording material is based on a thermoplastic material. The results presented indicate that the dimensions of the microholograms are larger than those calculated by use of simple laser beam waist approximations and that multiple layers of microholograms would significantly affect signal levels. Data densities achievable with the microholographic format will likely be limited by those effects.
本文介绍了一种三维光学数据存储系统,该系统将一种新型记录材料与一种微全息数据格式相结合,其中数据以单位微全息图的形式存储。除了与当前存储技术的兼容性增强之外,这种格式对环境条件的敏感度低于基于页的全息方法。新型记录材料基于一种热塑性材料。给出的结果表明,微全息图的尺寸大于使用简单激光束腰近似法计算出的尺寸,并且多层微全息图会显著影响信号电平。微全息格式可实现的数据密度可能会受到这些影响的限制。