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    • 3. 发明授权
    • Hybrid microlens array
    • 混合微透镜阵列
    • US06847491B1
    • 2005-01-25
    • US09672159
    • 2000-09-27
    • Benjamin Bin JianMichael H. Leary
    • Benjamin Bin JianMichael H. Leary
    • G02B3/00G02B6/42G02B11/00G02B6/32G02B6/36G02B27/10
    • G02B6/4212G02B3/0006G02B3/0012G02B6/4204G02B6/4207
    • The disclosed hybrid microlens enables the economical production of large diameter, high numerical aperture refractive microlens by microfabrication. The hybrid microlens has a combination of a refractive microlens formed on a thin layer of high index material such as silicon and a spacer layer of a low index material such as fused silica. Advantages include substantially reduced lens sag, fast etching of the microlens, small wafer stack thickness, large diffraction angle in the low index spacer, large optical beam diameter, high optical performance, and low cost.Also disclosed is a design for substantially reduced optical return signal and small polarization dependent optical loss from an optical fiber which is perpendicular to and butt-coupled to a planar optical surface. This design is to form a small slanted surface on the planar optical surface in the vicinity of the optical fiber core and fill the space between the fiber and the slanted surface with an index-matching optical epoxy.
    • 所公开的混合微透镜可通过微细加工经济地生产大直径,高数值孔径折射微透镜。 混合微透镜具有形成在诸如硅的高折射率材料的薄层上的屈光微透镜和诸如熔融二氧化硅的低折射率材料的间隔层的组合。 优点包括:实质上减小的透镜凹陷,微透镜的快速蚀刻,小的晶片堆叠厚度,低折射率间隔物中的大的衍射角,大的光束直径,高的光学性能和低的成本。还公开了一种基本上减小光学返回的设计 来自与平面光学表面垂直并对接耦合的光纤的信号和小偏振相关的光学损耗。 该设计是在光纤芯附近的平面光学表面上形成小的倾斜表面,并用折射率匹配光学环氧树脂填充纤维和倾斜表面之间的空间。
    • 5. 发明授权
    • Surface textured LEDs and method for making the same
    • 表面纹理LED及其制作方法
    • US07977702B2
    • 2011-07-12
    • US11592486
    • 2006-11-02
    • Michael R. T. TanMichael H. Leary
    • Michael R. T. TanMichael H. Leary
    • H01L33/00
    • H01L33/44H01L33/22H01L2933/0091
    • A light-emitting device that includes an LED and a light extraction layer and the method for making the same are disclosed. The LED includes a substrate on which an active layer is sandwiched between a p-type layer and an n-type layer, the active layer generating light in a band of wavelengths about a central wavelength when holes and electrons recombine therein. The n-type layer, active layer, and p-type layer are formed on the substrate. First and second electrodes for providing a potential difference between the p-type layer and the n-type layer are included in the LED. The light extraction layer includes a clear layer of material having a first surface in contact with a surface of the LED and a second surface having light scattering features with dimensions greater than 0.5 times the central wavelength. The material of the clear layer can be polycrystalline or amorphous.
    • 公开了一种包括LED和光提取层的发光器件及其制造方法。 LED包括其上有活性层夹在p型层和n型层之间的衬底,当空穴和电子在其中复合时,有源层在波长为中心波长的波长带中产生光。 在衬底上形成n型层,有源层和p型层。 用于在p型层和n型层之间提供电位差的第一和第二电极包括在LED中。 光提取层包括具有与LED的表面接触的第一表面的透明材料层和具有大于中心波长的0.5倍的光散射特征的第二表面。 透明层的材料可以是多晶的或无定形的。
    • 8. 发明授权
    • Optical isolator utilizing a micro-resonator
    • 光隔离器利用微谐振器
    • US07215848B2
    • 2007-05-08
    • US10768858
    • 2004-01-29
    • Michael R. T. TanWilliam TrutnaDavid P. BourMichael H. Leary
    • Michael R. T. TanWilliam TrutnaDavid P. BourMichael H. Leary
    • G02B6/26
    • G02B6/29335G02B6/12007G02B6/2746G02B2006/12097G02B2006/12104G02F1/0955G02F2203/15
    • An optical isolator for coupling light from a first waveguide to a second waveguide is disclosed. The optical isolator utilizes a resonator coupled to the first and second optical waveguides. The resonator has a resonance at λ for light traveling from the first optical waveguide to the second optical waveguide; however, the resonator does not have a resonance at λ for light traveling from the second waveguide to the first waveguide. The resonator can use a layer of ferromagnetic material in an applied magnetic field. The magnetic field within the ferromagnetic material varies in strength and/or direction over the layer of ferromagnetic material. The magnetic field can be generated by an external magnetic field that varies over the layer of ferromagnetic material. Alternatively, the resonator can include a layer of ferromagnetic metal that overlies a portion of the layer of ferromagnetic material and a constant external magnetic field.
    • 公开了一种用于将来自第一波导的光耦合到第二波导的光隔离器。 光隔离器利用耦合到第一和第二光波导的谐振器。 谐振器对于从第一光波导到第二光波导的光的λ具有谐振; 然而,对于从第二波导传播到第一波导的光,谐振器在λ处不具有谐振。 谐振器可以在施加的磁场中使用铁磁材料层。 铁磁材料内的磁场在铁磁材料层上的强度和/或方向上变化。 磁场可以由在铁磁材料层上变化的外部磁场产生。 或者,谐振器可以包括铁磁金属层,其覆盖铁磁材料层的一部分和恒定的外部磁场。
    • 10. 发明申请
    • Surface textured LEDs and method for making the same
    • 表面纹理LED及其制作方法
    • US20080105882A1
    • 2008-05-08
    • US11592486
    • 2006-11-02
    • Michael R.T. TanMichael H. Leary
    • Michael R.T. TanMichael H. Leary
    • H01L33/00
    • H01L33/44H01L33/22H01L2933/0091
    • A light-emitting device that includes an LED and a light extraction layer and the method for making the same are disclosed. The LED includes a substrate on which an active layer is sandwiched between a p-type layer and an n-type layer, the active layer generating light in a band of wavelengths about a central wavelength when holes and electrons recombine therein. The n-type layer, active layer, and p-type layer are formed on the substrate. First and second electrodes for providing a potential difference between the p-type layer and the n-type layer are included in the LED. The light extraction layer includes a clear layer of material having a first surface in contact with a surface of the LED and a second surface having light scattering features with dimensions greater than 0.5 times the central wavelength. The material of the clear layer can be polycrystalline or amorphous.
    • 公开了一种包括LED和光提取层的发光器件及其制造方法。 LED包括其上有活性层夹在p型层和n型层之间的衬底,当空穴和电子在其中复合时,有源层在波长为中心波长的波长带中产生光。 在衬底上形成n型层,有源层和p型层。 用于在p型层和n型层之间提供电位差的第一和第二电极包括在LED中。 光提取层包括具有与LED的表面接触的第一表面的透明材料层和具有大于中心波长的0.5倍的光散射特征的第二表面。 透明层的材料可以是多晶的或无定形的。