Research of emission of waveguides of two-dimensional triangular lattice photonic crystals

被引:0
作者
机构
[1] Electronic Engineering and Electrical Automation Institute, Chaohu University, Chaohu
来源
Ye, Song | 1600年 / Editorial Office of Chinese Optics卷 / 35期
关键词
Emission; Photonic crystals; Waveguide arrays; Waveguides;
D O I
10.3788/fgxb20143510.1258
中图分类号
学科分类号
摘要
A photonic crystal waveguide structure with two-dimensional triangular lattice photonic crystals is proposed, in which emission efficiency can be enhanced. The composite structure is composed by cascading a coupled waveguide arrays to a single waveguide. The emission characteristics of light are analyzed via the finite-difference time-domain(FDTD)method. The results show that the emission efficiency of the cascading composite structure is improved. The device has been optimized further. When the distance between the single waveguide and the waveguide arrays is 1.8a, the horizontal and vertical period number of the waveguide arrays are 6 and 5, the emission efficiency is the best. The emission efficiency is over 20%, when the distance is 100a between the waveguide output and detector. This type structure of photonic crystal has potential applications in near-field optics and integrated optics.
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页码:1258 / 1263
页数:5
相关论文
共 17 条
[1]  
Yablonovitch E., Inhibited spontaneous emission in solid-state physics and electronics , 58, 20, pp. 2059-2062, (1987)
[2]  
Cui N.D., Liang J.Q., Liang Z.Z., Et al., Design and fabrication of two-dimensional photonic crystal waveguides on silicon films , 18, 12, pp. 2549-2556, (2010)
[3]  
Cui N.D., Kou J.T., Liang J.Q., Et al., The directional coupler on the basis of the runway type photonic crystal waveguide , 34, 3, pp. 375-381, (2013)
[4]  
Ebbesen T.W., Lezec H.J., Ghaemi H.F., Et al., Extraordinary optical transmission through sub-wavelength hole arrays , Nature, 391, pp. 667-669, (1998)
[5]  
Martin-Moreno L., Garcia-Vidal F.J., Lezec H.J., Et al., Theory of dighly directional emission from a single subwavelength aperture surrounded by surface corrugations , 90, 16, pp. 1-4, (2003)
[6]  
Lezec H.J., Thio T., Diffracted evanescent wave model for enhanced and suppressed optical transmission through subwavelength hole arrays , 12, 16, pp. 3629-3651, (2004)
[7]  
Barnes W.L., Murray W.A., Dintinger J., Et al., Surface plasmon polaritons and their role in the enhanced transmission of light through periodic arrays of subwavelength holes in a metal film , 92, 10, pp. 1-4, (2004)
[8]  
Kramper P., Agio M., Soukoulis C.M., Et al., Highly directional emission from photonic crystal waveguides of subwavelength width , 92, 11, pp. 1-4, (2004)
[9]  
Li Z.F., Aydin K., Ozbay E., Highly directional emission from photonic crystals with a wide bandwidth , 91, 12, pp. 1-3, (2007)
[10]  
Morrison S.K., Kivshar Y.S., Beaming effect from increased-index photonic crystal waveguides , 81, pp. 343-346, (2005)