全息存储器
- 网络holographic memory
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波导全息存储器的多层读出特性
Image Production Properties of Multilayered Waveguide Holographic Memory
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这些特性表明了体全息存储器对于参考光平行度调节的要求并不十分严格。
These features imply not so rigorous requirements on the parallelism of the reference beam in a volume holographic memory .
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本论文的研究就是以角度复用的体全息存储器作为相关运算器,来做图象的相关识别。
This paper is aiming at image recognition based on angle-multiplexed volume holographic correlator .
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本论文工作的目的就是采用体全息存储器对图像库进行模式识别。
This thesis is aiming at pattern recognition with image bases stored in VHM .
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莫尔条纹分析在数字全息存储器中的应用
Moire Fringe Analysis on Digital Holographic Storage
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体全息存储器以其鲜明的特点和发展潜力成为这一研究领域的重要发展方向。
The research and development on high capacity , high quality storage device have become an urgent task .
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因此,光折变体全息存储器大多基于铌酸锂晶体。目前,光折变存储器在并行计算、光通讯、军事目标快速识别、星载信息存储等方面的研究正方兴未艾。
The photorefractive storages are in the ascendant in parallel computing , optical fiber communications , military targets fast recognition and satellite-borne data storage .
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研究了多层波导全息存储器的读出特性和读出层的选择方法。
Image production characteristics and selection method of the image production layer in the " multilayered waveguide holographic read-only memory ( MWH-ROM )" were investigated .
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体全息存储器因其存储密度高、存储容量巨大、存取速度极快的独特优势,可望满足这种需求。
Owing to the advantages in high storage capacity , fast data transfer rate , and short access time , volume holographic memories ( VHM ) are considered to meet the needs .
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以Ce∶Cu∶KNSBN晶体作记录介质和自泵浦位相共轭镜进行实时全息联想存储器实验。
The real-time associated holographic storage experiment was performed by using Ce ∶ Cu ∶ KNSBN as the storage media and the self-pump phase conjugate mirror .
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Ar~+激光光折变全息照相存储器的研究
Calculation on holographic memory of photorefraction with A_r ~ + laser
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三维全息照相存储器一种包含各种信息的中介图象,这种信息是用来利用全息术制作三维图象。
Three-D holographic memory the intermediate photographic record that contains information for reproducing a three-dimensional image by holography .
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光学体全息数据存储器以其存储容量大、数据传输速率高、信息寻址速度快等优点,在现代信息存储技术竞争中显示出巨大的优势和良好的发展前景。
Optical volume holographic data storage is the promising storage technique because of its high data storage density , high transfer speed , fast parallel access , and so on .