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Novel properties of wave propagation in biaxially anisotropic left-handed materials

机译:双轴各向异性左手材料中波传播的新性质

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摘要

Some physically interesting properties and effects of wave propagation in biaxially anisotropic left-handed materials are investigated in this paper. We show that in the biaxially gyrotropic left-handed material, the left-right coupling of circularly polarized light arises due to the negative indices in permittivity and permeability tensors of gyrotropic media. It is well known that the geometric phases of photons inside a curved fiber in previous experiments often depend on the cone angles of solid angles subtended by a curve traced by the direction of wave vector of light, at the center of photon momentum space. Here, however, for the light propagating inside certain anisotropic left-handed media we will present a different geometric phase that is independent of the cone angles. The extra phases of electromagnetic wave resulting from the instantaneous helicity inversion at the interfaces between left- and right- handed (LRH) media is also studied in detail by using the Lewis-Riesenfeld invariant theory. Some interesting applications (e.g., controllable position-dependent frequency shift, detection of quantum-vacuum geometric phases and helicity reversals at the LRH interfaces etc.) of above effects and phenomena in left-handed media is briefly discussed.
机译:本文研究了双轴各向异性左手材料中一些物理上有趣的特性和波传播的影响。我们表明,在双轴回旋左旋材料中,圆偏振光的左右耦合是由于回旋介质的介电常数和磁导率张量中的负指数引起的。众所周知,在先前的实验中,弯曲光纤内的光子的几何相位通常取决于在光子动量空间中心处由光波矢量的方向所跟踪的曲线所对应的立体角的锥角。但是,在这里,对于在某些各向异性左手介质中传播的光,我们将呈现一个与锥角无关的不同几何相位。还使用Lewis-Riesenfeld不变理论详细研究了左手和右手(LRH)介质之间的界面上的瞬时螺旋度反转产生的电磁波的额外相位。简要讨论了左手介质中上述效果和现象的一些有趣的应用(例如,可控制的位置相关的频移,量子真空几何相位的检测以及LRH界面处的螺旋度反转等)。

著录项

  • 作者

    Shen, J Q;

  • 作者单位
  • 年度 2003
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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