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    • 7. 发明申请
    • Single panel color image projection system
    • 单面彩色图像投影系统
    • US20050157271A1
    • 2005-07-21
    • US11056321
    • 2005-02-10
    • Yin Tang
    • Yin Tang
    • H04N9/31G03B21/28
    • H04N9/3114H04N9/3117
    • In one embodiment, a color projection system includes a lamp; at least one prism configured to diffract light from the lamp into a diffracted beam; and an LC microdisplay panel or MEMS panel configured to receive the diffracted beam from the at least one prism, wherein by moving the at least one prism with respect to the light from the lamp, the diffracted beam received by the LC microdisplay or MEMS panel sequentially comprises a diffracted red beam, a diffracted blue beam, and a diffracted green beam, the LC microdisplay panel or MEMS panel being configured to sequentially modulate the diffracted red beam into a red sub-frame of an image, the diffracted green beam into a green sub-frame of the image, and the diffracted blue beam into a blue sub-frame of the image.
    • 在一个实施例中,彩色投影系统包括灯; 至少一个棱镜,被配置为将来自灯的光衍射成衍射光束; 以及LC微显示面板或MEMS面板,被配置为从所述至少一个棱镜接收所述衍射光束,其中通过相对于来自所述灯的光移动所述至少一个棱镜,由所述LC微显示器或MEMS面板顺序地接收的衍射光束 包括衍射红光束,衍射蓝光束和衍射绿色光束,LC微显示面板或MEMS面板被配置为将衍射红光束顺序地调制成图像的红色子帧,衍射绿色光束变为绿色 图像的子帧,以及衍射的蓝色光束成为图像的蓝色子帧。
    • 8. 发明申请
    • Integration of rare-earth doped amplifiers into semiconductor structures and uses of same
    • 将稀土掺杂放大器集成到半导体结构中并使用其
    • US20050195472A1
    • 2005-09-08
    • US10778737
    • 2004-02-13
    • Yin Tang
    • Yin Tang
    • H01S3/00H01S3/063H01S3/09H01S3/16
    • H01S3/0632G02B2006/12097H01S3/0637H01S3/09H01S3/1608H01S3/1691H01S3/2308
    • An integrated device is disclosed which has a substrate and a Rare-Earth Doped Semiconductor layer (REDS layer) integrated with the substrate. The REDS layer is patterned to define one or more optically amplifying structures each having a first I/O port for receiving or outputting a first optical signal, and at least one pump energy receiving port for receiving pumping energy in the form of at least one of electrical pump energy and/or optical pump energy. In one particular set of embodiments, at least one of the optical amplifying structures is a Raman type amplifier where a corresponding pump energy receiving port is structured for receiving Raman type pumping energy having an effective frequency which is about one optical phonon frequency higher than a signal frequency of an optical signal supplied at a corresponding I/O port. Methods are disclosed for fabricating Rare-Earth Doped Semiconductor layers, including providing such layers in semiconductor-on-insulator (SOI) structures and for enhancing the effective, long-term concentrations of incorporated, rare earth atoms. Additionally, non-parallel pumping techniques are disclosed.
    • 公开了一种集成器件,其具有与衬底集成的衬底和稀土掺杂半导体层(REDS层)。 REDS层被图案化以限定一个或多个光学放大结构,每个光放大结构具有用于接收或输出第一光信号的第一I / O端口,以及至少一个泵能量接收端口,用于接收以下形式的泵浦能量: 电泵能量和/或光泵能量。 在一组特定的实施例中,至少一个光放大结构是拉曼型放大器,其中相应的泵浦能量接收端口被构造成用于接收拉曼型泵浦能量,其具有大约一个光学声子频率高于信号的有效频率 在相应的I / O端口提供的光信号的频率。 公开了用于制造稀土掺杂半导体层的方法,包括在半导体绝缘体(SOI)结构中提供这样的层并且用于增强掺入的稀土原子的有效的长期浓度。 另外,公开了非平行泵浦技术。