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首页> 外文期刊>Optics Letters >Continuously tuning effective refractive index based on thermally controllable magnetic metamaterials
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Continuously tuning effective refractive index based on thermally controllable magnetic metamaterials

机译:基于可热控制的磁性超材料连续调整有效折射率

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摘要

By employing a thermally active magnetic material, we theoretically design a kind of electromagnetic metamaterial with intrinsic magnetic response, termed magnetic metamaterial (MM). The retrieved effective electric permittivity ε_(eff) and magnetic permeability μ_(eff) exhibit a nearly continuous transition from double negative to double zero, and then to double positive by controlling the temperature, indicating a flexible tunability of the effective refractive index. The beam splitting, collimation, focusing, and total reflection are achieved at different typical temperatures. Most importantly, with the MM implemented under a gradient temperature, a gradient negative-zero-positive index metamaterial (NZPIM) can possibly be realized, thus providing a new platform to study wave features in NZPIM.
机译:通过使用热活性磁性材料,我们在理论上设计了一种具有固有磁响应的电磁超材料,称为电磁超材料(MM)。检索到的有效介电常数ε_(eff)和磁导率μ_(eff)表现出从双负到双零的几乎连续的转变,然后通过控制温度变为双正,这表明有效折射率的柔性可调。在不同的典型温度下可以实现分束,准直,聚焦和全反射。最重要的是,通过在梯度温度下实施MM,可以实现梯度负零正指数超材料(NZPIM),从而为研究NZPIM中的波浪特征提供了新的平台。

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