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    • 8. 发明授权
    • Resolution improvement of images recorded using storage phosphors
    • 使用存储荧光粉记录的图像的分辨率改进
    • US5534702A
    • 1996-07-09
    • US287433
    • 1994-08-08
    • William R. Trutna, Jr.James B. Williamson
    • William R. Trutna, Jr.James B. Williamson
    • G03C1/725G01T1/29G21K4/00G03C1/00
    • G21K4/00G01T1/2012G21K2004/12
    • A simplified, cost effective optical apparatus for solid state photorecording of optical images with enhanced resolution. The optical apparatus of the invention includes an array of optical apertures and a plurality of portions of a phosphorescent material. Each portion is optically coupled to a respective one of the apertures. The apertures are exposed to an optical image so as to record the image in the plurality of portions of the phosphorescent material. A number of the apertures of the invention is large, preferably within a range of approximately one million to seven million apertures. For example in a preferred embodiment the number of the apertures is approximately six million apertures. Preferably, the optical apertures are microscopic optical apertures. For example, each aperture has a respective width dimension within a range of approximately ten to fifty microns. Preferably, the respective width dimension of each aperture is approximately twelve microns.
    • 一种用于具有增强分辨率的光学图像的固态光记录的简化的,成本有效的光学装置。 本发明的光学装置包括光学孔的阵列和磷光材料的多个部分。 每个部分光学耦合到相应的一个孔。 孔径暴露于光学图像,以便将图像记录在磷光材料的多个部分中。 本发明的许多孔是大的,优选在大约一百万到七百万个孔的范围内。 例如,在优选实施例中,孔的数量为大约六百万个孔。 优选地,光学孔是微观光学孔。 例如,每个孔具有在大约十到五十微米的范围内的相应的宽度尺寸。 优选地,每个孔的相应宽度尺寸大约为十二微米。
    • 9. 发明授权
    • Multipath Raman cell for wavelength conversion
    • 用于波长转换的多径拉曼电池
    • US4297600A
    • 1981-10-27
    • US916592
    • 1978-06-19
    • William R. Trutna, Jr.
    • William R. Trutna, Jr.
    • H01S3/30H03F7/00
    • H01S3/305
    • The wavelength of an optical pump beam is down converted to a longer wavelength in a Raman active gaseous medium by stimulated Raman scattering. The Raman active gaseous medium is contained in the space between a pair of optical reflectors of an optical resonator of the type for producing a focus of the optical beam energy at a point intermediate the length of the resonator within the Raman active medium to enhance conversion of pump energy into the output longer wavelength of the Stokes wave. The pump beam is directed into the optical resonator at an angle to the optical axis of the optical resonator such that the optical beam path is folded back and forth within the optical resonator to cause the beam spot to walk over the surfaces of the reflectors and out of the optical resonator. The multipass Raman cell of the present invention is particularly useful for down converting pump wave energy in the infrared at relatively high power levels to Stokes wave infrared energy of longer wavelengths, such as at 16 microns, for producing a dissociation of molecules as may be employed for isotope separation.
    • 通过受激拉曼散射,光泵浦光束的波长在拉曼活性气体介质中下变换为更长的波长。 拉曼活性气体介质包含在光学谐振器的一对光反射器之间的空间中,该光学谐振器的类型用于在拉曼活性介质内的谐振器的长度的中间产生光束能量的焦点,以增强 泵浦能量输入到斯托克斯波长的波长。 泵浦光束以与光谐振器的光轴成角度的方式被引导到光学谐振器中,使得光束路径在光学谐振器内来回折叠以使得光束点在反射器的表面上行进并出射 的光谐振器。 本发明的多通道拉曼单元特别可用于将红外线中的泵波能量以相当高的功率水平下降到较长波长(例如16微米)的斯托克斯波红外能量,以产生可能被使用的分子解离 用于同位素分离。