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利用LED照度公式推导出LED圆形阵列的光斑半径和发散角公式,建立了研究LED圆形阵列光斑发散特性的数值计算方法.在此基础上利用拟合方法得出了LED圆形阵列的光斑半径和发散角随m值、随目标距离、随阵列半径变化的幂函数公式,这些幂函数拟合公式能够很好地与数值计算结果吻合.利用这些公式能够十分方便地对LED圆形阵列的光斑发散特性进行解析研究,为研究LED圆形阵列的光斑发散特性建立了一种新方法,弥补了数值计算方法不能对LED圆形阵列的光斑发散特性进行解析研究的缺陷. 相似文献
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半无限周期声子晶体的全反射隧穿能带 总被引:1,自引:0,他引:1
利用色散法研究了在入射角大于全反射角时弹性波在一维半无限周期声子晶体中的传输特性。结果发现当弹性波大于全反射角入射一维半无限周期声子晶体时出现了两级全反射隧穿导带;并得出了全反射隧穿导带随入射角和周期厚度的响应曲线,分析可知:导带的频率中心随入射角的增加而增加,随周期厚度的增加而降低;导带的频率宽度随入射角的增加而减小,随周期厚度的增加而降低。 相似文献
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A strong chiral near-field plays significant roles in the detection, separation and sensing of chiral molecules. In this paper, a simple and symmetric metasurface is proposed to generate strong chiral near-fields with both circularly polarized light and linearly polarized light illuminations in the mid-infrared region. Owing to the near-field interaction between plasmonic resonant modes of two nanosheets excited by circularly polarized light, there is a strong single-handed chiral near-field in the gap between the two graphene nanosheets and the maximum enhancement of the optical chirality could reach two orders of magnitude. As expected, the intensity and the response wavelength of the chiral near-fields could be controlled by the Fermi level and geometrical parameters of the graphene nanosheets, as well as the permittivity of the substrate. Meanwhile, based on the interaction between the incident field and scattered field, the one-handed chiral near-field in the gap also could be generated by the linearly polarized light excitation. For the two cases, the handedness of the chiral near-field could be switched by the polarized direction of the incident light. These results have potential opportunities for applications in molecular detection and sensing. 相似文献
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