首页> 外文会议>Conference on plasmonics: Metallic nanostructures and their optical properties XIII >Non-quasi-static eigenstates of Maxwell's equations in a two-constituent composite medium and their application to a calculation of the local electric field of an oscillating dipole
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Non-quasi-static eigenstates of Maxwell's equations in a two-constituent composite medium and their application to a calculation of the local electric field of an oscillating dipole

机译:Maxwell等式中的非准静态特征在两个组成复合介质中的应用及其应用于振荡偶极子的局部电场的计算

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In conventional optics the image is formed only by the propagating waves and the information encoded in the evanescent waves is lost, leading to limited resolution. A negative refractive index slab can amplify evanescent waves and enable the generation of an image by both propagating and non propagating waves, theoretically leading to unlimited resolution. Here we analyze the imaging of an oscillating dipole in a composite structure composed of an ε_1 slab surrounded by an ε_2 medium, where μ = 1 everywhere. For this purpose we calculate all the eigenstates and eigenvalues of the full Maxwell equations for the composite structure and develop an exact expansion for the local electric field E(r) in the system. Then we calculate the intensity and resolution for various permittivity values. We show that only the low order modes contribute to the expansion of the electric field which enables an efficient calculation of the physical quantities.
机译:在传统光学中,图像仅由传播波形成,并且在渐逝波中编码的信息丢失,导致分辨率有限。负折射率板可以通过传播和非传播波来扩增渐变波,并使图像产生图像,从而实现无限分辨率。在这里,我们在由ε_2介质围绕的ε_1板组成的复合结构中分析振荡偶极子的成像,其中μ= 1到处。为此目的,我们计算用于复合结构的全麦克斯韦方程的所有特征和特征值,并对系统中的局部电场E(R)产生精确的扩展。然后我们计算各种允许值的强度和分辨率。我们表明,只有低阶模式有助于扩展电场,这使得能够有效地计算物理量。

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