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一维金属-电介质多层堆叠结构中的非线性脉冲传播:超宽带光学限幅

Nonlinear pulse propagation in one-dimensional metal-dielectric multilayer stacks: ultrawide bandwidth optical limiting.

作者信息

Scalora Michael, Mattiucci Nadia, D'Aguanno Giuseppe, Larciprete MariaCristina, Bloemer Mark J

机构信息

Charles M. Bowden Research Center, AMSRD-AMR-WS-ST, RDECOM, Redstone Arsenal, Alabama 35898-5000, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Jan;73(1 Pt 2):016603. doi: 10.1103/PhysRevE.73.016603. Epub 2006 Jan 12.

Abstract

We numerically study the nonlinear optical properties of metal-dielectric photonic band gap structures in the pulsed regime. We exploit the high chi3 of copper metal to induce nonlinear effects such as broadband optical limiting, self-phase modulation, and unusual spectral narrowing of high intensity pulses. We show that in a single pass through a typical, chirped multilayer stack nonlinear transmittance and peak powers can be reduced by nearly two orders of magnitude compared to low light intensity levels across the entire visible range. Chirping dielectric layer thickness dramatically improves the linear transmittance through the stack and achieves large fields inside the copper to access the large nonlinearity. At the same time, the linear properties of the stack block most of the remaining electromagnetic spectrum.

摘要

我们对脉冲状态下金属-电介质光子带隙结构的非线性光学特性进行了数值研究。我们利用铜金属的高三阶非线性极化率来诱导非线性效应,如宽带光学限幅、自相位调制以及高强度脉冲的异常光谱变窄。我们表明,在单次通过典型的啁啾多层堆叠结构时,与整个可见光范围内的低光强水平相比,非线性透过率和峰值功率可降低近两个数量级。啁啾电介质层厚度显著提高了通过该堆叠结构的线性透过率,并在铜内部实现了强场,从而利用其大的非线性特性。与此同时,该堆叠结构的线性特性阻挡了大部分其余的电磁频谱。

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