超材料
物理
非线性系统
介电常数
电介质
电磁场
超短脉冲
带宽(计算)
厚板
脉搏(音乐)
领域(数学)
电磁脉冲
介电常数
光学
计算物理学
光电子学
计算机科学
电信
量子力学
激光器
数学
地球物理学
探测器
纯数学
作者
Alessandro Ciattoni,Carlo Rizza,Andrea Marini,Andrea Di Falco,Daniele Faccio,Michael Scalora
标识
DOI:10.1002/lpor.201500326
摘要
Abstract In recent years, unconventional metamaterial properties have triggered a revolution of electromagnetic research which has unveiled novel scenarios of wave‐matter interaction. A very small dielectric permittivity is a leading example of such unusual features, since it produces an exotic static‐like regime where the electromagnetic field is spatially slowly‐varying over a physically large region. The so‐called epsilon‐near‐zero metamaterials thus offer an ideal platform where to manipulate the inner details of the “stretched” field. Here we theoretically prove that a standard nonlinearity is able to operate such a manipulation to the point that even a thin slab produces a dramatic nonlinear pulse transformation, if the dielectric permittivity is very small within the field bandwidth. The predicted non‐resonant releasing of full nonlinear coupling produced by the epsilon‐near‐zero condition does not resort to any field enhancement mechanism and opens novel routes to exploiting matter nonlinearity for steering the radiation by means of ultra‐compact structures. image
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