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    • 1. 发明授权
    • Artificial electromagnetic material
    • 人造电磁材料
    • US09219314B2
    • 2015-12-22
    • US13583881
    • 2011-10-27
    • Ruopeng LiuLin LuanChaofeng Kou
    • Ruopeng LiuLin LuanChaofeng Kou
    • H01Q15/00H01Q15/02
    • H01Q15/02H01Q15/0026H01Q15/0086
    • An artificial electromagnetic material includes at least one material sheet. Each material sheet includes a substrate and a plurality of artificial microstructures attached to the substrate. Each substrate is virtually divided into multiple of substrate units arranged into an array. A pair of artificial microstructures is attached to each substrate. The pair of artificial microstructures includes a first artificial microstructure and a second artificial microstructure with different shapes. The dielectric constant of artificial electromagnetic materials gradually increases from zero in a certain frequency range, therefore the material has a low dielectric constant in the certain frequency range and can meet some needs of special situation.
    • 人造电磁材料包括至少一种材料片。 每个材料片包括基底和附着到基底的多个人造微结构。 每个基板实际上分成多个布置成阵列的基板单元。 一对人造微结构附着在每个基底上。 一对人造微结构包括第一人造微结构和具有不同形状的第二人造微结构。 人造电磁材料的介电常数在一定频率范围内逐渐从零开始增加,因此材料在一定频率范围内具有低介电常数,可满足特殊情况的一些需求。
    • 2. 发明授权
    • Artificial microstructure and metamaterial using the same
    • 人造微结构和超材料使用相同
    • US09166272B2
    • 2015-10-20
    • US13634506
    • 2011-10-27
    • Ruopeng LiuLin LuanChaofeng KouFanglong He
    • Ruopeng LiuLin LuanChaofeng KouFanglong He
    • H01Q1/00H01Q15/00
    • H01Q1/00H01Q15/0086
    • The present invention provides an artificial microstructure including a first metal wire, a second metal wire parallel to the first metal wire, at least one first metal wire branch and at least one second metal wire branch. The at least one first metal wire branch and the at least one second metal wire branch are distributed in an interlacement arrangement. One end of the at least one first metal wire branch is connected to the first metal wire; the other end is a free end facing towards the second metal wire. One end of the at least one second metal wire branch is connected to the second metal wire, and the other end of the at least one second metal wire is a free end facing towards the first metal wire. The present invention also discloses a metamaterial with the artificial microstructures.
    • 本发明提供一种人造微结构,其包括第一金属线,平行于第一金属线的第二金属线,至少一个第一金属线分支和至少一个第二金属线分支。 所述至少一个第一金属线分支和所述至少一个第二金属线分支以交错布置分布。 所述至少一个第一金属线分支的一端连接到所述第一金属线; 另一端是朝向第二金属线的自由端。 所述至少一个第二金属线分支的一端连接到所述第二金属线,并且所述至少一个第二金属线的另一端是朝向所述第一金属线的自由端。 本发明还公开了具有人造微结构的超材料。
    • 3. 发明申请
    • WAVE-ABSORBING METAMATERIAL
    • 吸波元件
    • US20140246608A1
    • 2014-09-04
    • US14009023
    • 2011-11-30
    • Ruopeng LiuLin LuanZhiya ZhaoWenjian Wang
    • Ruopeng LiuLin LuanZhiya ZhaoWenjian Wang
    • G21F1/08
    • G21F1/08H01Q17/00H01Q17/002H05K9/0086
    • The present invention relates to a wave-absorbing metamaterial, comprising a substrate which is provided with two opposite lateral surfaces, wherein a plurality of periodically arranged artificial metal microstructures are attached on at least one of the two opposite lateral surfaces; when an electromagnetic wave having an incident direction vertical to the two opposite lateral surfaces of the substrate is transmitted to the wave-absorbing metamaterial, a relative permittivity of the metamaterial is substantially equal to a relative magnetic conductivity of the metamaterial. A wave-absorbing principle different from that of a conventional wave-absorbing material is employed on the wave-absorbing metamaterial; an ideal wave-absorbing effect is achieved by periodically arranging various artificial metal microstructures on the substrate and adjusting the artificial metal microstructures; and the wave-absorbing metamaterial has the advantages of minor weight, small thickness and simply adjustable electromagnetic parameters.
    • 吸波超材料本发明涉及一种吸波超材料,其包括具有两个相对的侧表面的基底,其中多个周期性布置的人造金属微结构附着在两个相对的侧表面中的至少一个上; 当具有垂直于基板的两个相对侧表面的入射方向的电磁波被传送到吸波超材料时,超材料的相对介电常数基本上等于超材料的相对磁导率。 在吸波超材料上采用与传统吸波材料不同的波吸收原理; 通过在基板上周期性地布置各种人造金属微观结构并调整人造金属微观结构,实现理想的波浪吸收效果; 吸波材料具有重量轻,厚度小,电磁参数简单等优点。
    • 6. 发明申请
    • METAMATERIAL FOR DEFLECTING ELECTROMAGNETIC WAVE
    • 用于偏转电磁波的元件
    • US20120327666A1
    • 2012-12-27
    • US13522500
    • 2011-11-29
    • Ruopeng LiuChunlin JiLin LuanJinjin Wang
    • Ruopeng LiuChunlin JiLin LuanJinjin Wang
    • F21V5/00
    • H01Q15/0086
    • The present embodiment relates to a metamaterial for deflecting electromagnetic wave, includes a functional layer made up by at least one metamaterial sheet layer, each of the metamaterial sheet layers including a substrate and a number of artificial microstructures attached onto the substrate. The functional layer is divided into several strip-like regions. The refractive indices in all the strip-like regions continually increase along the same direction and there are at least two adjacent first and second regions, wherein,the refractive indices in the first region continually increase from n1 to n2, the refractive indices in the second region continually increase from n3 to n4, and n2>n3. The metamaterial of the present invention that deflects electromagnetic wave has a number of regions disposed thereon. In each region, the refractive indices can continuously increase or decrease so that the electromagnetic waves within the regions will be slowly deflected.
    • 本实施例涉及用于偏转电磁波的超材料,包括由至少一个超材料片层构成的功能层,每个超材料片层包括基片和多个附着在基片上的人造微结构。 功能层分为几个条状区域。 所有带状区域中的折射率沿着相同的方向连续地增加,并且存在至少两个相邻的第一和第二区域,其中,第一区域中的折射率从n1持续增加到n2,第二区域中的折射率 区域从n3不断增加到n4,n2> n3。 偏转电磁波的本发明的超材料具有设置在其上的多个区域。 在每个区域中,折射率可以连续地增加或减小,使得区域内的电磁波将被缓慢偏转。
    • 7. 发明申请
    • Impedance matching component
    • 阻抗匹配组件
    • US20120280761A1
    • 2012-11-08
    • US13522335
    • 2011-11-18
    • Ruopeng LiuGuanxiong XuLin LuanChunlin JiZhiya ZhaoNenghui Fang
    • Ruopeng LiuGuanxiong XuLin LuanChunlin JiZhiya ZhaoNenghui Fang
    • H03H7/38
    • H01P1/2005G02B1/002H01Q15/0026H01Q15/0086H05K1/0236H05K1/024H05K1/025
    • The present disclosure discloses an impedance matching component disposed between a first medium and a second medium, which is formed by stacking a plurality of homogeneous metamaterial sheet layers in a direction perpendicular to surfaces thereof. Each of the metamaterial sheet layers comprises a substrate and a plurality of man-made microstructures attached thereon. A first and last metamaterial sheet layers have impedances identical to those of the first and second media respectively. The man-made microstructures attached on the first metamaterial sheet layer have a first pattern, the man-made microstructures attached on the last metamaterial sheet layer have a second pattern, and the man-made microstructures attached on intermediate ones of the metamaterial sheet layers have patterns that are combinations of the first and second patterns, with the first pattern becoming smaller continuously and the second pattern becoming larger continuously in the stacking direction of the metamaterial sheet layers.
    • 本公开公开了一种设置在第一介质和第二介质之间的阻抗匹配部件,其通过在垂直于其表面的方向上层叠多个均匀的超材料片层而形成。 每个超材料片层包括基底和附着在其上的多个人造微结构。 第一和最后的超材料片层分别具有与第一和第二介质相同的阻抗。 附着在第一超材料片层上的人造微结构具有第一图案,附着在最后的超材料片层上的人造微结构具有第二图案,并且附着在中间的超材料片层上的人造微结构具有 图案是第一图案和第二图案的组合,其中第一图案连续变小并且第二图案在超材料片层的堆叠方向上连续变大。
    • 8. 发明授权
    • Wave-absorbing metamaterial
    • 吸波超材料
    • US09208913B2
    • 2015-12-08
    • US14009023
    • 2011-11-30
    • Ruopeng LiuLin LuanZhiya ZhaoWenjian Wang
    • Ruopeng LiuLin LuanZhiya ZhaoWenjian Wang
    • H01Q17/00G21F1/08H05K9/00G01S13/00
    • G21F1/08H01Q17/00H01Q17/002H05K9/0086
    • The present invention relates to a wave-absorbing metamaterial, comprising a substrate which is provided with two opposite lateral surfaces, wherein a plurality of periodically arranged artificial metal microstructures are attached on at least one of the two opposite lateral surfaces; when an electromagnetic wave having an incident direction vertical to the two opposite lateral surfaces of the substrate is transmitted to the wave-absorbing metamaterial, a relative permittivity of the metamaterial is substantially equal to a relative magnetic conductivity of the metamaterial. A wave-absorbing principle different from that of a conventional wave-absorbing material is employed on the wave-absorbing metamaterial; an ideal wave-absorbing effect is achieved by periodically arranging various artificial metal microstructures on the substrate and adjusting the artificial metal microstructures; and the wave-absorbing metamaterial has the advantages of minor weight, small thickness and simply adjustable electromagnetic parameters.
    • 吸波超材料本发明涉及一种吸波超材料,其包括具有两个相对的侧表面的基底,其中多个周期性布置的人造金属微结构附着在两个相对的侧表面中的至少一个上; 当具有垂直于基板的两个相对侧表面的入射方向的电磁波被传送到吸波超材料时,超材料的相对介电常数基本上等于超材料的相对磁导率。 在吸波超材料上采用与传统吸波材料不同的波吸收原理; 通过在基板上周期性地布置各种人造金属微观结构并调整人造金属微观结构,实现理想的波浪吸收效果; 吸波材料具有重量轻,厚度小,电磁参数简单等优点。