Chen Daru
Institute of Information Optics, Zhejiang Normal University, Jinhua 321004, China.
Appl Opt. 2010 Dec 20;49(36):6868-71. doi: 10.1364/AO.49.006868.
A novel cylindrical hybrid plasmonic waveguide is proposed to achieve subwavelength confinement of light. With a metal core surrounded by a silica layer and a silicon layer, the proposed cylindrical hybrid plasmonic waveguide can achieve a ring-structure mode profile at the operating wavelength (1550 nm). Most mode power locates in the silica layer with a nanoscale thickness (e.g., 50, 20, or even 5 nm), which is due to the effects of both a strong discontinuity of the normal component of the electric field at the silicon-silica interface and the exited surface plasmon wave at the silica-metal interface. Cylindrical hybrid plasmonic waveguides with different structure parameters are investigated and a relatively long propagation distance of tens of micrometers (or even hundreds of micrometers) is observed.
提出了一种新型圆柱形混合等离子体波导,以实现光的亚波长限制。所提出的圆柱形混合等离子体波导具有被二氧化硅层和硅层包围的金属芯,在工作波长(1550 nm)处可实现环形结构的模式分布。大多数模式功率位于具有纳米级厚度(例如50、20甚至5 nm)的二氧化硅层中,这是由于硅-二氧化硅界面处电场法向分量的强不连续性以及二氧化硅-金属界面处激发的表面等离子体波的共同作用。研究了具有不同结构参数的圆柱形混合等离子体波导,并观察到了数十微米(甚至数百微米)的相对较长传播距离。