Gligorić G, Maluckov A, Hadžievski Lj, Slepyan G Ya, Malomed B A
P* group, Vinča Institute of Nuclear Sciences, University of Belgrade, POB 522, 11001 Belgrade, Serbia.
J Phys Condens Matter. 2015 Jun 10;27(22):225301. doi: 10.1088/0953-8984/27/22/225301. Epub 2015 May 18.
We consider two-dimensional (2D) arrays of self-organized semiconductor quantum dots (QDs) strongly interacting with electromagnetic field in the regime of Rabi oscillations. The QD array built of two-level states is modelled by two coupled systems of discrete nonlinear Schrödinger equations. Localized modes in the form of single-peaked fundamental and vortical stationary Rabi solitons and self-trapped breathers have been found. The results for the stability, mobility and radiative properties of the Rabi modes suggest a concept of a self-assembled 2D soliton-based nano-antenna, which is stable against imperfections In particular, we discuss the implementation of such a nano-antenna in the form of surface plasmon solitons in graphene, and illustrate possibilities to control their operation by means of optical tools.
我们考虑在拉比振荡 regime 中与电磁场强烈相互作用的自组织半导体量子点(QD)的二维(2D)阵列。由二能级态构建的量子点阵列由两个耦合的离散非线性薛定谔方程组建模。已经发现了单峰基态和涡旋稳态拉比孤子以及自陷呼吸子形式的局域模。拉比模的稳定性、迁移率和辐射特性的结果提出了一种基于自组装二维孤子的纳米天线的概念,该纳米天线对缺陷具有稳定性。特别是,我们讨论了以石墨烯中的表面等离子体孤子形式实现这种纳米天线,并说明了通过光学工具控制其操作的可能性。