Bliokh K Y, Rodríguez-Fortuño F J, Bekshaev A Y, Kivshar Y S, Nori F
Opt Lett. 2018 Mar 1;43(5):963-966. doi: 10.1364/OL.43.000963.
Nonreciprocity and one-way propagation of optical signals are crucial for modern nanophotonic technology, and typically achieved using magneto-optical effects requiring large magnetic biases. Here we suggest a fundamentally novel approach to achieve unidirectional propagation of surface plasmon-polaritons (SPPs) at metal-dielectric interfaces. We employ a direct electric current in metals, which produces a Doppler frequency shift of SPPs due to the uniform drift of electrons. This tilts the SPP dispersion, enabling one-way propagation, as well as zero and negative group velocities. The results are demonstrated for planar interfaces and cylindrical nanowire waveguides.
光信号的非互易性和单向传播对现代纳米光子技术至关重要,通常利用需要大磁偏置的磁光效应来实现。在此,我们提出一种全新的方法,以实现表面等离激元极化激元(SPP)在金属-电介质界面的单向传播。我们在金属中施加直流电流,由于电子的均匀漂移,这会产生SPP的多普勒频移。这使SPP色散发生倾斜,从而实现单向传播以及零群速度和负群速度。结果在平面界面和圆柱形纳米线波导中得到了验证。