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Gain in negative-index metamaterials and slow-light waveguides

机译:获得负折射率超材料和慢光波导

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摘要

We investigate on the basis of a full three-dimensional spatio-temporal Maxwell-Bloch approach the possibility of complete loss compensation in non-bianisotropic negative refractive index (NRI) metamaterials. We show that a judicious incorporation of optically pumped gain materials, such as laser dyes, into a double-fishnet metamaterial can enable gain in the regime where the real part n' of the resulting effective refractive index (n = n' + in") is negative. It is demonstrated that a frequency band exists for realistic opto-geometric and material (gain/loss) parameters where n' < 0 and simultaneously n" < 0 hold, resulting in a figure-of-merit that diverges at two distinct frequency points. Having ensured on the microscopic, meta-molecular level that realistic levels of losses and even gain are accessible in the considered optical frequency regime we explore the possibility of compensating propagation losses in a negative refractive index slow-light metamaterial heterostructure. The heterostructure is composed of a negative refractive index core-layer bounded symmetrically by two thin active cladding layers providing evanescent gain to the propagating slow light pulses. It is shown that backward-propagating light -having anti-parallel phase and group velocities and experiencing a negative effective refractive index - can be amplified inside this slow-light waveguide structure. Our results provide a direct and unambiguous proof that full compensation of losses and attainment of gain are possible on the microscopic as well as the macroscopic level in the regime where the non-bianisotropic refractive index is negative - including, in particular, the regime where the guided light propagates slowly.
机译:我们基于完整的三维时空麦克斯韦-布洛赫(Maxwell-Bloch)方法研究非各向异性各向异性负折射率(NRI)超材料中完全损耗补偿的可能性。我们表明,明智地将光泵浦增益材料(例如激光染料)并入双鱼网超材料中可以在由此产生的有效折射率的实部n'(n = n'+ in“)的范围内实现增益证明存在一个频带,用于实际的光学几何和材料(增益/损耗)参数,其中n'<0且同时n“ <0成立,从而导致品质因数在两个不同的点处发散频点。在微观,超分子水平上确保在考虑的光频范围内可以实现实际的损耗甚至增益水平,我们探索了在负折射率慢光超材料异质结构中补偿传播损耗的可能性。异质结构由一个负折射率核心层组成,该核心层由两个薄的有源覆层对称地界定,从而为传播的慢光脉冲提供了gain逝增益。结果表明,在这种慢光波导结构内部,具有反向平行相位和群速度并具有负有效折射率的向后传播光可以被放大。我们的结果提供了直接明确的证据,即在非各向异性折射率为负的情况下,微观和宏观水平上的损耗和获得增益的完全补偿是可能的,特别是在引导光缓慢传播。

著录项

  • 来源
    《Metamaterials: Fundamentals and applications III》|2010年|p.775403.1-775403.11|共11页
  • 会议地点 San Diego CA(US)
  • 作者单位

    Advanced Technology Institute and Department of Physics, Faculty of Engineering and Physical Sciences, University of Surrey, Guildford, GU2 7XH, United Kingdom;

    Advanced Technology Institute and Department of Physics, Faculty of Engineering and Physical Sciences, University of Surrey, Guildford, GU2 7XH, United Kingdom;

    Advanced Technology Institute and Department of Physics, Faculty of Engineering and Physical Sciences, University of Surrey, Guildford, GU2 7XH, United Kingdom;

    Advanced Technology Institute and Department of Physics, Faculty of Engineering and Physical Sciences, University of Surrey, Guildford, GU2 7XH, United Kingdom;

    Advanced Technology Institute and Department of Physics, Faculty of Engineering and Physical Sciences, University of Surrey, Guildford, GU2 7XH, United Kingdom;

    et al;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 材料;
  • 关键词

    Metamaterials; gain; negative refractive index; surface plasmons; waveguides; slow light;

    机译:超材料;获得;负折射率表面等离激元波导慢光;

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