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    • 5. 发明授权
    • Low temperature grown optical detector
    • 低温生长光检测器
    • US06653706B1
    • 2003-11-25
    • US09567179
    • 2000-05-08
    • David A. B. MillerJames S. Harris, Jr.
    • David A. B. MillerJames S. Harris, Jr.
    • H01C3100
    • H01L31/1852H01L31/09H01L31/1085Y02E10/544
    • A high efficiency optical interconnect (OI) deposited directly on a silicon based IC by a low temperature process that utilizes a heterogeneous crystalline structure of a III-V compound material to convert light pulses into electrical signals. The high efficiency is established by pulsing the light beams with a shorter duration than the life time of the generated carriers and by reducing the structural volume and consequently the internal capacitance of the III-V compound to a functional height of approximately 1 micron. The analog MSM characteristic of the OI is bypassed by differential two-beam signal processing, wherein the intensity difference of two synchronous light beams is transformed in two parallel OI's into two electrical signals that compensate in a central node. The resulting polarity in the node switches either a PMOS or a NMOS transistor, which connect either a positive or negative voltage to the output node.
    • 通过利用III-V复合材料的异质晶体结构的低温工艺将直接沉积在硅基IC上的高效光学互连(OI)将光脉冲转换成电信号。 通过以比产生的载流子的寿命短的持续时间脉冲光束和通过将III-V族化合物的内部电容降低到大约1微米的功能高度来建立高效率。 OI的模拟MSM特性被差分双波束信号处理旁路,其中两个同步光束的强度差在两个并行OI中变换成两个电信号,在中心节点进行补偿。 在节点中产生的极性切换PMOS或NMOS晶体管,其将正电压或负电压连接到输出节点。
    • 7. 发明授权
    • Apparatus and method employing multilayer thin-film stacks for spatially shifting light
    • 使用多层薄膜堆叠空间移动光的装置和方法
    • US07088884B2
    • 2006-08-08
    • US10227138
    • 2002-08-22
    • Martina GerkenDavid A. B. Miller
    • Martina GerkenDavid A. B. Miller
    • G02B6/28
    • G02B27/148G02B6/29362G02B6/29365G02B27/1006G02B27/142
    • An apparatus and method for spatially shifting a light using a multilayer thin-film stack of at least two materials having unequal optical properties, such as indices of refraction and absorption coefficients. The apparatus has an input face for admitting the light into the apparatus and an impedance matching mechanism for maximizing the in-coupling of the light into the multilayer thin-film stack at a non-normal incidence. The non-normal incidence is sufficient to generate a spatial shift of the light in the multilayer thin-film stack as a function of at least one light parameter, such as wavelength and/or polarization of the light, thereby separating the light into light components. The spatial shift is achieved by any one or any combination of effects including superprism, turning point and energy confinement. These effects are achieved in the multilayer thin-film stack by appropriately engineering its layer sequence.
    • 使用具有不等光学性质的至少两种材料的多层薄膜叠层(例如折射率和吸收系数)来空间移动光的装置和方法。 该装置具有用于将光引入装置的输入面和阻抗匹配机构,用于在非正常入射下最大化将光与多层薄膜叠层的耦合。 非正常入射足以根据至少一种光参数(例如光的波长和/或偏振)产生多层薄膜叠层中的光的空间位移,从而将光分离成光分量 。 空间位移通过任何一种或任何组合的效果来实现,包括超能力,转折点和能量限制。 通过适当地设计其层序来在多层薄膜堆叠中实现这些效果。