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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >MgF_2 as a material exhibiting all-angle negative refraction and subwavelength imaging due to the phonon response in the far infrared
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MgF_2 as a material exhibiting all-angle negative refraction and subwavelength imaging due to the phonon response in the far infrared

机译:由于远红外中的声子响应,MgF_2作为一种材料表现出全角度负折射和亚波长成像

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摘要

We consider the possibility of using MgF_2 crystals as a suitable material for achieving all-angle negative refraction at far infrared frequencies. This possibility is associated with the highly anisotropic nature of the phonon response, leading to dielectric tensor components of opposing signs. The results show that this phenomenon should occur at somewhat lower frequencies than that of quartz, which has previously been investigated experimentally, but with relatively high efficiency. We also simulate subwavelength imaging, through canalization, at 247 cm~(-1), corresponding to the frequency of a transverse optical phonon polarized perpendicular to the extraordinary axis. Our simulations show that the Fabry-Perot condition (use of a slab of thickness equal to an integral number of half-wavelengths) is not necessarily helpful in achieving subwavelength resolution.
机译:我们考虑使用MgF_2晶体作为在远红外频率下实现全角度负折射的合适材料的可能性。这种可能性与声子响应的高度各向异性有关,导致相反符号的介电张量分量。结果表明,这种现象的发生频率应低于石英的频率,而石英此前已通过实验进行了研究,但效率较高。我们还通过渠化模拟了在247 cm〜(-1)处的亚波长成像,该波长对应于垂直于非寻常轴偏振的横向光学声子的频率。我们的模拟表明,法布里-珀罗条件(使用厚度等于一半整数的整数倍的平板)不一定有助于实现亚波长分辨率。

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