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    • 9. 发明授权
    • Periodic dielectric structure for production of photonic band gap and
devices incorporating the same
    • 用于生产光子带隙的周期性电介质结构及其结合的器件
    • US5335240A
    • 1994-08-02
    • US995248
    • 1992-12-22
    • Kai-Ming HoChe-Ting ChanCostas Soukoulis
    • Kai-Ming HoChe-Ting ChanCostas Soukoulis
    • G02B6/122G02B6/136H01S3/14
    • G02B6/136B82Y20/00G02B6/1225
    • A periodic dielectric structure which is capable of producing a photonic band gap and which is capable of practical construction. The periodic structure is formed of a plurality of layers, each layer being formed of a plurality of rods separated by a given spacing. The material of the rods contrasts with the material between the rods to have a refractive index contrast of at least two. The rods in each layer are arranged with their axes parallel and at a given spacing. Adjacent layers are rotated by 90.degree., such that the axes of the rods in any given layer are perpendicular to the axes in its neighbor. Alternating layers (that is, successive layers of rods having their axes parallel such as the first and third layers) are offset such that the rods of one are about at the midpoint between the rods of the other. A four-layer periocity is thus produced, and successive layers are stacked to form a three-dimensional structure which exhibits a photonic band gap. By virtue of forming the device in layers of elongate members, it is found that the device is susceptible of practical construction.
    • 能够产生光子带隙并且能够实际构造的周期性电介质结构。 周期性结构由多个层组成,每个层由分隔开给定间隔的多个杆形成。 杆的材料与杆之间的材料形成对比,以具有至少两个的折射率对比度。 每个层中的杆被布置成它们的轴线平行并且以给定的间隔。 相邻的层旋转90°,使得任何给定层中的杆的轴线垂直于其邻近的轴。 交替层(即,具有平行于第一层和第三层的轴的连续层的层)被偏移,使得一个杆的大约在另一个的杆之间的中点处。 由此产生四层膜,并且连续层叠以形成呈现光子带隙的三维结构。 通过将器件形成为细长构件的层,发现该器件易于实际构造。
    • 10. 发明授权
    • Multi-channel polarized thermal emitter
    • 多通道偏振热发射器
    • US08487283B1
    • 2013-07-16
    • US12288742
    • 2008-10-23
    • Jae-Hwang LeeKai-Ming HoKristen P. Constant
    • Jae-Hwang LeeKai-Ming HoKristen P. Constant
    • H01L35/02G01J3/10
    • G01J3/10
    • A multi-channel polarized thermal emitter (PTE) is presented. The multi-channel PTE can emit polarized thermal radiation without using a polarizer at normal emergence. The multi-channel PTE consists of two layers of metallic gratings on a monolithic and homogeneous metallic plate. It can be fabricated by a low-cost soft lithography technique called two-polymer microtransfer molding. The spectral positions of the mid-infrared (MIR) radiation peaks can be tuned by changing the periodicity of the gratings and the spectral separation between peaks are tuned by changing the mutual angle between the orientations of the two gratings.
    • 提出了一种多通道偏振热发射器(PTE)。 多通道PTE可以在正常出现时不使用偏振器发射偏振热辐射。 多通道PTE由单层和均质金属板上的两层金属光栅组成。 它可以通过称为双聚合物微转移成型的低成本软光刻技术来制造。 可以通过改变光栅的周期性来调整中红外(MIR)辐射峰的光谱位置,并且通过改变两个光栅的取向之间的相互角来调整峰之间的光谱间隔。