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The magical world of metamaterials

机译:超材料的神奇世界

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摘要

In recent years, there has been a burgeoning interest in rapidly growing field of metamaterials due to their unprecedented properties unattainable from ordinary materials. Veselago pointed out that a material exhibiting negative values of dielectric permittivity (ε) and magnetic permeability (μ) would have a negative refractive index [1]. Generally speaking, the dielectric permittivity (ε) and the magnetic permeability (μ) are both positive for natural materials. In fact it is possible to obtain negative values for ε and μ by utilizing proper designs of metamaterials. Left-handed electromagnetism and negative refraction are achievable with artificially structured metamaterials exhibiting negative values of permittivity and permeability simultaneously at a certain frequency region. The first steps to realize these novel type of materials were taken by Smith et al., where they were able to observe a left-handed propagation band at frequencies where both dielectric permittivity and magnetic permeability of the composite metamaterial are negative [2]. Soon after, left-handed metamaterials with an effective negative index of refraction are successfully demonstrated by various groups [3].
机译:近年来,由于超常材料在普通材料中无法获得的空前性能,因此在快速发展的超常材料领域中引起了人们的浓厚兴趣。 Veselago指出,介电常数(ε)和磁导率(μ)为负值的材料将具有负折射率[1]。一般而言,天然材料的介电常数(ε)和磁导率(μ)均为正。实际上,通过利用超材料的适当设计,可以获得ε和μ的负值。左手电磁和负折射是可以通过人工结构的超材料实现的,该超材料在特定频率范围内同时显示出介电常数和磁导率为负值。 Smith等人采取了实现这些新型材料的第一步,他们能够在复合超材料的介电常数和磁导率均为负的频率下观察到左手传播带[2]。此后不久,各个小组成功地证明了具有有效负折射率的惯用左手超材料[3]。

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