论文标题

矩形屏障中非线性表面等离子体极化子的传播和激发特性

Propagation and excitation properties of nonlinear surface plasmon polaritons in a rectangular barrier

论文作者

Tian, Xiangchun, Zhang, Yundong, Duan, Yu, Zhou, Yong, Tan, Chaohua

论文摘要

我们提出了一个方案,以研究非线性表面等离子体偏振子(SPP)的非线性传播特性,并通过调节矩形屏障调节电磁诱导的透明度(EIT)系统。基于多量表方法,得出了描述spps非线性传播的非线性schrödinger方程(NLSE),并且矩形屏障影响非线性spp的传播,由异位抗谐振的鲜明场提供。对于单个非线性属于事件的事件,通过调整屏障的高度和一半宽度,我们可以实现非线性SPP的传输,捕获和反射。对于两个非线性属于对称的事件情况,我们发现可以在矩形屏障中激发横向模式下的周期强度分布,并且我们研究了这种激发模式在屏障中具有非线性,屏障的一半宽度与初始非线性spps的相位差的一半宽度的传播特性之间的关系。此外,我们根据上述结果设计了非线性属于的光学开关。此处获得的结果不仅为研究非线性属于非线性属于外部电位的相互作用的研究提供了理论基础,而且在微观/纳米尺度的光学信息领域中也具有广泛的应用前景。

We propose a scheme to study the nonlinear propagation properties of nonlinear surface plasmon polaritons (SPPs) in a three level $Λ$ type electromagnetically induced transparency (EIT) system with modulation of a rectangular barrier. Based on the multi scale method, the nonlinear Schrödinger equation (NLSE) describing nonlinear propagation of SPPs is derived, and the rectangular barrier affecting propagation of nonlinear SPPs is provided by an off-resonance Stark field. For the single nonlinear SPPs incident case, by adjusting the height and half width of the barrier, we can realize transmission, trapping and reflection of the nonlinear SPPs. For two nonlinear SPPs symmetrical incident case, we find that a periodic intensity distribution in transverse direction mode can be excited in the rectangular barrier, and we study the relationship between propagation properties of such excited modes in the barrier with nonlinearity, half width of the barrier and phase difference of the initial nonlinear SPPs. In addition, we design an optical switch of nonlinear SPPs based on the above results. The results obtained here not only provide a theoretical basis for the study of the interaction between nonlinear SPPs and external potentials, but also have broad application prospects in the field of optical information at micro/nano scale.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源