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Focusing Efficiency Analysis and Performance Optimization of Arbitrarily Sized DNG Metamaterial Slabs With Losses

机译:任意尺寸有损DNG超材料平板的聚焦效率分析和性能优化

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摘要

The focusing behavior and optimal design of lossy double-negative (DNG) metamaterial slabs are thoroughly explored in this paper via an efficient technique. To this aim, the novel scheme embodies the signal processing notions of the cross-correlation coefficient and mean square error (mse) to treat structures with convoluted attributes. Furthermore, an enhanced formulation of the latter indicator, devoid of its conventional weaknesses, is introduced. In particular, by neglecting the phase term due to wave propagation in the vacuum/metamaterial space, the modified mse attains far more accurate outcomes without any contrived assumptions. The effectiveness of the prior criteria is successfully examined through the infinite slab case. Next, analysis proceeds to finite-length slabs which are modeled by means of a frequency-dependent finite-difference time-domain algorithm. Numerical verification, addressing diverse complicated DNG arrangements, reveals the advantages of the proposed methodology, indicating its competence to reliably explore the operational characteristics of such demanding media
机译:通过一种有效的技术,本文彻底探讨了有损双负(DNG)超材料平板的聚焦特性和优化设计。为此,该新颖方案体现了互相关系数和均方误差(mse)的信号处理概念,以处理具有卷积属性的结构。此外,引入了后一种指标的改进形式,而没有其常规的缺点。特别地,通过忽略由于波在真空/超材料空间中传播而引起的相位项,在没有任何人为假设的前提下,修改后的mse可以实现更为精确的结果。通过无限平板情况成功地检验了先前标准的有效性。接下来,进行有限长平板的分析,这些平板通过频率相关的有限差分时域算法进行建模。数值验证解决了各种复杂的DNG布置问题,揭示了拟议方法的优势,表明其有能力可靠地探索此类苛刻介质的运行特性

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