首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Nature of the enhanced resonant modes in one-dimensional photonic random dimer systems
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Nature of the enhanced resonant modes in one-dimensional photonic random dimer systems

机译:一维光子随机二聚体系统中增强共振模式的性质

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摘要

The propagation of light in a one-dimensional multilayer stack is examined for a disordered system with short range correlation. As known in the random dimer model, pairing the defect elements at random breaks down the Anderson localization and opens a frequency window of extended propagating modes around the predicted conventional dimer resonance. By dealing with host and defect layers with identical phase thicknesses at both host and defect principal standing resonances, we demonstrate the existence of a new ballistic-like regime at an additional standing commuting resonance. Moreover, by suitably tuning the host standing and conventional defect dimer resonances relative to each other, the transmission responses are both turned into a ballistic transmission regime. By scaling the transmission coefficient over the system length within the resonance window, we analyse the nature of the propagating modes, i.e. ballistic or diffusive. Beyond the resonance, quantitative views on the different transmission regimes and their related phase transitions are examined, pointing out the possibility of designing attractive ballistic resonant optical devices with adjustable transmission responses.
机译:对于具有短程相关性的无序系统,要检查一维多层堆栈中光的传播。如在随机二聚体模型中已知的,将缺陷元素随机配对会破坏安德森定位,并围绕预测的常规二聚体共振打开扩展传播模式的频率窗口。通过处理在主体和缺陷主站立共振时具有相同相位厚度的主体和缺陷层,我们证明了在额外的站立换向共振中存在一种新的弹道状状态。此外,通过适当地相对于彼此调整主机站立和常规缺陷二聚体共振,传输响应都变成弹道传输方式。通过在共振窗口内的系统长度上缩放传输系数,我们分析了传播模式的性质,即弹道或扩散模式。除了共振以外,还研究了有关不同传输方式及其相关相变的定量视图,指出了设计有吸引力的具有可调传输响应的弹道共振光学器件的可能性。

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