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    • 2. 发明授权
    • Monochromatic light source with high aspect ratio
    • 具有高纵横比的单色光源
    • US08193543B2
    • 2012-06-05
    • US13058315
    • 2009-08-18
    • Catherine A. LeatherdaleMichael A. HaaseTodd A. Ballen
    • Catherine A. LeatherdaleMichael A. HaaseTodd A. Ballen
    • H01L27/15
    • H01L33/20H01L33/08H01L33/10H01L33/505
    • Light emitting systems are disclosed. The light emitting system includes an LED that emits light at a first wave-length. A primary portion of the emitted first wavelength light exits the LED from a top surface of the LED that has a minimum lateral dimension Wmin. The remaining portion of the emitted first wavelength light exits the LED from one or more sides of the LED that has a maximum edge thickness Tmax (122, 124). The ratio Wmin/Tmax is at least 30. The light emitting system further includes a re-emitting semiconductor construction that includes a semiconductor potential well. The re-emitting semiconductor construction receives the first wavelength light that exits the LED from the top surface and converts at least a portion of the received light to light of a second wavelength. The integrated emission intensity of all light at the second wavelength that exit the light emitting system is at least 4 times the integrated emission intensity of all light at the first wavelength that exit the light emitting system.
    • 公开了发光系统。 发光系统包括发射第一波长的光的LED。 发射的第一波长光的主要部分从具有最小横向尺寸Wmin的LED的顶表面离开LED。 发射的第一波长光的剩余部分从具有最大边缘厚度Tmax(122,124)的LED的一侧或多侧离开LED。 比率Wmin / Tmax至少为30.发光系统还包括包括半导体势阱的再发射半导体结构。 再发射半导体结构从顶表面接收离开LED的第一波长光,并将接收的光的至少一部分转换成第二波长的光。 离开发光系统的第二波长的所有光的集成发射强度是离开发光系统的第一波长的所有光的集成发射强度的至少4倍。
    • 4. 发明申请
    • MONOCHROMATIC LIGHT SOURCE WITH HIGH ASPECT RATIO
    • 单色光源高倍率
    • US20110140128A1
    • 2011-06-16
    • US13058315
    • 2009-08-18
    • Catherine A. LeatherdaleMichael A. HaaseTodd A. Ballen
    • Catherine A. LeatherdaleMichael A. HaaseTodd A. Ballen
    • H01L33/50H01L33/20H01L33/28
    • H01L33/20H01L33/08H01L33/10H01L33/505
    • Light emitting systems are disclosed. The light emitting system includes an LED that emits light at a first wave-length. A primary portion of the emitted first wavelength light exits the LED from a top surface of the LED that has a minimum lateral dimension Wmin. The remaining portion of the emitted first wavelength light exits the LED from one or more sides of the LED that has a maximum edge thickness Tmax (122, 124). The ratio Wmin/Tmax is at least 30. The light emitting system further includes a re-emitting semiconductor construction that includes a semiconductor potential well. The re-emitting semiconductor construction receives the first wavelength light that exits the LED from the top surface and converts at least a portion of the received light to light of a second wavelength. The integrated emission intensity of all light at the second wavelength that exit the light emitting system is at least 4 times the integrated emission intensity of all light at the first wavelength that exit the light emitting system.
    • 公开了发光系统。 发光系统包括发射第一波长的光的LED。 发射的第一波长光的主要部分从具有最小横向尺寸Wmin的LED的顶表面离开LED。 发射的第一波长光的剩余部分从具有最大边缘厚度Tmax(122,124)的LED的一侧或多侧离开LED。 比率Wmin / Tmax至少为30.发光系统还包括包括半导体势阱的再发射半导体结构。 再发射半导体结构从顶表面接收离开LED的第一波长光,并将接收的光的至少一部分转换成第二波长的光。 离开发光系统的第二波长的所有光的集成发射强度是离开发光系统的第一波长的所有光的集成发射强度的至少4倍。
    • 5. 发明授权
    • Multidirectional photoreactive absorption method
    • 多向光反应吸收法
    • US07790353B2
    • 2010-09-07
    • US10297961
    • 2001-06-14
    • Patrick R. FlemingRobert J. DeVoeCatherine A. LeatherdaleTodd A. BallenJeffrey M. Florczak
    • Patrick R. FlemingRobert J. DeVoeCatherine A. LeatherdaleTodd A. BallenJeffrey M. Florczak
    • G11C7/00
    • G11C7/00B33Y30/00G03F7/2051
    • A method for enhancing photoreactive absorption in a specified volume element of a photoreactive composition. In one embodiment, the method includes: providing a photoreactive composition: providing a source of light (preferably, a pulsed laser) sufficient for simultaneous absorption of at least two photons by the photoreactive composition, the light source having a beam capable of being divided: dividing the light beam into a plurality of equal path length exposure beams: and focusing the exposure beams in a substantially non-counter propagating manner at a single volume element of the photoreactive composition simultaneously to react at least a portion of the photoreactive composition. In another embodiment, a method includes: providing a photoreactive composition capable of photoreactive absorption: and exposing the photoreactive composition to laser light from a plurality of substantially non-counter propagating directions simultaneously, wherein the light overlaps in time and space at a predetermined focus spot.
    • 一种用于增强光反应性组合物的特定体积元素中的光反应性吸收的方法。 在一个实施方案中,该方法包括:提供光反应性组合物:提供足以使光反应性组合物同时吸收至少两种光子的光源(优选脉冲激光),所述光源具有能够被分割的光束: 将光束分成多个相等路径长度的曝光光束:并且将曝光光束以基本上非反向传播的方式聚焦在光反应性组合物的单一体积元件上同时反应至少一部分光反应性组合物。 在另一个实施方案中,一种方法包括:提供能够进行光反应吸收的光反应性组合物;和将光反应性组合物同时从多个基本上非反向传播方向的激光曝光,其中光在预定焦点处的时间和空间重叠 。