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首页> 外文期刊>Physical Review, B. Condensed Matter >ELECTROMAGNETIC PROPERTIES OF A DIELECTRIC GRATING .1. PROPAGATING, EVANESCENT, AND GUIDED WAVES
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ELECTROMAGNETIC PROPERTIES OF A DIELECTRIC GRATING .1. PROPAGATING, EVANESCENT, AND GUIDED WAVES

机译:介电栅的电磁特性.1。传播,隐避和引导波

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Electromagnetic properties of nanostructured rectangular gratings of semiconductor materials are studied by exactly solving Maxwell's equations for a local dielectric function. Propagating, evanescent, and guided waves in unidimensional periodic lattices are computed, and their interference is discussed quantitatively. Nearly vanishing transmittance and nearly total reflectance can be obtained in extended frequency ranges, which can be tailored by suitably choosing grating parameters. The local electric field within, between, and below the dielectric wires is computed for ct broad range of grating parameters and for various angles of incidence of light: we find that the electric-field component parallel to the wires is always larger than that perpendicular to them within the wires. The last result is relevant for discussing photoluminescence experiments in the gratings of quantum-well wires. [References: 34]
机译:通过精确求解局部介电函数的麦克斯韦方程,研究了半导体材料纳米结构矩形光栅的电磁性能。计算一维周期性晶格中的传播波,e逝波和导波,并定量讨论其干扰。在扩展的频率范围内可获得几乎消失的透射率和几乎全反射率,这可以通过适当选择光栅参数来定制。对于ct宽范围的光栅参数和各种角度的入射光,计算了介电线内,介电线下和介电线以下的局部电场:我们发现平行于导线的电场分量始终大于垂直于电场线的电场分量。他们在电线内。最后的结果与讨论量子阱线的光栅中的光致发光实验有关。 [参考:34]

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