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    • 1. 发明授权
    • Color display system using magneto-optic screen having a dispersive
Faraday coefficient
    • 使用具有分散法拉第系数的磁光屏的彩色显示系统
    • US4229072A
    • 1980-10-21
    • US913259
    • 1978-06-06
    • Ernest J. TorokDavid L. FlemingThomas R. Johansen
    • Ernest J. TorokDavid L. FlemingThomas R. Johansen
    • H04N5/74G02F1/09G03B21/60G09F9/00H04N9/12H04N9/31G11B11/10G11C13/06
    • G02F1/09
    • A display system using the dispersive Faraday coefficient of a magnetic screen to obtain a color display from white light is disclosed. A beam of energy is directed upon a magnetic screen while concurrently an intensity modulated magnetic field is directed normal to the surface of the magnetic screen. The combination of the heating effect of the energy beam and the magnetic orienting effect of the intensity modulated magnetic field established localized areas of differing magnetic characteristics over the planar surface of the magnetic screen. Subsequently, a polarized beam of white light that floods the magnetic screen is, for each of several wave lengths, differently rotated upon passing through each of the areas of differing magnetic characteristics in the magnetic screen. The beamlets that are formed by the so-differently rotated areas of the polarized white light beam are then passed through an uncrossed analyzer, which beamlets appear as a multicolored projection upon the magnetic screen.
    • 公开了一种使用磁屏幕的色散法拉第系数从白光获得彩色显示的显示系统。 能量束被引导到磁屏幕上,同时强度调制的磁场垂直于磁屏幕的表面。 能量束的加热效应和强度调制磁场的磁定向效应的组合在磁屏幕的平面表面上建立了不同磁特性的局部区域。 随后,对于磁屏幕进行泛化的白光偏振光束,对于几个波长中的每一个,在穿过磁屏幕中的不同磁特性的每个区域时不同地旋转。 由偏振的白光束的不同旋转的区域形成的子束然后通过未交叉的分析器,该分束器在磁屏幕上显示为多色投影。