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    • 55. 发明授权
    • Ex-situ doped semiconductor transport layer
    • 非原位掺杂半导体传输层
    • US07375011B1
    • 2008-05-20
    • US11677794
    • 2007-02-22
    • Keith B. Kahen
    • Keith B. Kahen
    • H01L21/20
    • H01L21/02628H01L21/02521H01L21/02601Y10S977/892
    • A method of making an ex-situ doped semiconductor transport layer for use in an electronic device includes: growing a first set of semiconductor nanoparticles having surface organic ligands in a colloidal solution; growing a second set of dopant material nanoparticles having surface organic ligands in a colloidal solution; depositing a mixture of the first set of semiconductor nanoparticles and the second set of dopant material nanoparticles on a surface, wherein there are more semiconductor nanoparticles than dopant material nanoparticles; performing a first anneal of the deposited mixture of nanoparticles so that the organic ligands boil off the surfaces of the first and second set of nanoparticles; performing a second anneal of the deposited mixture so that the semiconductor nanoparticles fuse to form a continuous semiconductor layer and the dopant material atoms diffuse out from the dopant material nanoparticles and into the continuous semiconductor layer.
    • 制造用于电子器件的非原位掺杂半导体传输层的方法包括:在胶体溶液中生长具有表面有机配体的第一组半导体纳米颗粒; 在胶体溶液中生长具有表面有机配体的第二组掺杂剂材料纳米颗粒; 将第一组半导体纳米颗粒和第二组掺杂剂材料纳米颗粒的混合物沉积在表面上,其中存在比掺杂剂材料纳米颗粒更多的半导体纳米颗粒; 对所沉积的纳米颗粒混合物进行第一次退火,使得有机配体从第一组和第二组纳米颗粒的表面沸腾出来; 对沉积的混合物进行第二退火,使得半导体纳米颗粒融合形成连续的半导体层,并且掺杂剂材料原子从掺杂剂材料纳米颗粒扩散到连续的半导体层中。
    • 56. 发明授权
    • Vertical cavity laser producing different color light
    • 垂直腔激光产生不同颜色的光
    • US07045825B2
    • 2006-05-16
    • US10857512
    • 2004-05-28
    • Keith B. KahenErica N. Montbach
    • Keith B. KahenErica N. Montbach
    • H01L21/00H01L33/00H01S3/03H01S3/09
    • G02F1/133617
    • A display apparatus for producing colored pixelated light includes a backlight unit for producing pump-beam light and a vertical cavity laser array device including a structure for modulating the properties of the device at spaced locations so as to provide an array of spaced laser pixels which have higher net gain than the interpixel regions, and an active region which produces blue light in response to the pump-beam light. The apparatus also includes a light shutter and a color conversion layer including different portions, where selected different portions in response to blue light produce a different colored light and being adapted to increase the angular cone of view of the selected colored light.
    • 一种用于制造彩色像素化光的显示装置包括用于产生泵浦光束的背光单元和垂直腔激光器阵列装置,其包括用于在间隔位置调制装置的特性的结构,以提供间隔开的激光像素阵列, 比内插区域更高的净增益,以及响应于泵浦光束产生蓝光的有源区域。 该装置还包括光快门和包括不同部分的颜色转换层,其中响应于蓝光的选择的不同部分产生不同的着色光并且适于增加所选择的有色光的角锥角。
    • 58. 发明授权
    • Scanned display systems using color laser light sources
    • 使用彩色激光光源的扫描显示系统
    • US06879306B2
    • 2005-04-12
    • US10137761
    • 2002-05-02
    • John P. SpoonhowerKeith B. KahenJohn A. Lebens
    • John P. SpoonhowerKeith B. KahenJohn A. Lebens
    • G02B26/10H04N9/31G09G3/34H01L21/00H01S5/00G02F1/3339
    • H04N9/3129
    • A display system for providing a user viewable visible color image includes a display for receiving color laser light so that the display, in response to color laser light, produces a viewable visible colored image; a plurality of different color laser light sources arranged in an array with each such laser light source including: a first dielectric stack for receiving and transmitting pump-beam light and being reflective to laser light over a predetermined range of wavelengths; an organic active region for receiving transmitted pump-beam light from the first dielectric stack; and a second dielectric stack for reflecting transmitted pump-beam light and laser light from the organic active region back into the organic active region. The display system projects color laser light from the array onto the display in a pattern to cause a visual image to be produced by the display.
    • 用于提供用户可见可见彩色图像的显示系统包括用于接收彩色激光的显示器,使得响应于彩色激光的显示器产生可见的可见彩色图像; 多个不同颜色的激光光源排列成阵列,每个这样的激光源包括:第一电介质叠层,用于接收和传输泵浦光束并在预定波长范围内反射激光; 有机活性区域,用于接收来自第一介质叠层的透射泵浦光束; 以及用于将来自有机活性区域的透射的泵浦光和激光反射回有机活性区域的第二电介质叠层。 显示系统将彩色激光从阵列投影到显示器上,以使显示器产生视觉图像。
    • 59. 发明授权
    • Providing an organic vertical cavity laser array device with etched region in dielectric stack
    • 在电介质堆叠中提供具有蚀刻区域的有机垂直腔激光器阵列器件
    • US06790696B1
    • 2004-09-14
    • US10609922
    • 2003-06-30
    • Keith B. Kahen
    • Keith B. Kahen
    • H01L2100
    • H01S5/183H01S5/0201H01S5/36H01S5/423
    • A method of making an organic vertical cavity laser array device includes providing a substrate and a first portion of a bottom dielectric stack reflective to light over a predetermined range of wavelengths and being disposed over the substrate; forming an etched region in the top surface of the first portion of the bottom dielectric stack to define an array of spaced laser pixels which have higher reflectance than the interpixel regions so that the array emits laser light; and forming a second portion of the bottom dielectric stack over the etched first portion. The method also includes forming an active region over the second portion of the bottom dielectric stack for producing laser light, and forming a top dielectric stack over the active region and spaced from the bottom dielectric stack and reflective to light over a predetermined range of wavelengths.
    • 一种制造有机垂直腔激光器阵列器件的方法包括提供反射到预定波长范围上的光的衬底和底部电介质叠层的第一部分,并设置在衬底上; 在所述底部电介质堆叠的所述第一部分的顶表面中形成蚀刻区域以限定具有比所述像素间区域更高的反射率的间隔开的激光像素的阵列,使得所述阵列发射激光; 以及在所述蚀刻的第一部分上形成所述底部电介质叠层的第二部分。 该方法还包括在底部电介质堆叠的第二部分上形成有源区域,用于产生激光,以及在有源区域上形成顶部电介质堆叠并与底部电介质叠层隔开并在预定波长范围内反射。