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    • 1. 发明授权
    • Coherent interaction of optical radiation beams with optical-electronic materials of generalized crystal symmetry
    • 光辐射束与广义晶体对称性的光电子材料的相干相互作用
    • US06407831B1
    • 2002-06-18
    • US09463607
    • 2000-05-03
    • Rufus L. ConeGuanrring WangYongchen SunRandy W. Equall
    • Rufus L. ConeGuanrring WangYongchen SunRandy W. Equall
    • H01S400
    • G01N21/21
    • A method for optimizing the interaction of a resonant material having generalized crystal symmetry with a beam or beams of radiation. The invention includes determining a special direction relative to the axes of crystal symmetry of the material and polarizing the interaction radiation beam along this direction. The polarized radiation beam is propagated through the material perpendicular to this special direction. The method and system are used in any application which involves the coherent interaction of optical radiation beams or fields with resonant ion-doped or molecular crystals of various types. Coherent interaction of optical radiation beams or fields with resonant ion-doped or molecular crystals of various types includes the phenomena of optical coherent transients, spectral hole burning, and spatial-spectral holography (also called time and space domain holography) and provides the basis for optical-electronic devices. Such applications include computer and communications networks.
    • 一种用于优化具有广义晶体对称性的共振材料与光束或辐射束的相互作用的方法。 本发明包括确定相对于材料的晶体对称轴的特定方向并沿着该方向偏振相互作用辐射束。 偏振辐射束通过垂直于该特殊方向的材料传播。 该方法和系统用于涉及光辐射束或场与各种类型的谐振离子掺杂或分子晶体的相干相互作用的任何应用中。 具有各种类型的谐振离子掺杂或分子晶体的光辐射束或场的相干相互作用包括光学相干瞬变,光谱空穴燃烧和空间光谱全息术(也称为时间和空间域全息术)的现象,并为 光电子器件。 这样的应用包括计算机和通信网络。