激光与光电子学进展, 2014, 51 (3): 031902, 网络出版: 2014-03-03  

多重旋转对称结构光子晶格的实验研究

Experimental Study of Multiple Rotational Symmetry Photonic Lattices
作者单位
内蒙古师范大学物理与电子信息学院, 内蒙古 呼和浩特 010022
摘要
采用光诱导光子晶格的方法,利用3 孔、4 孔、5 孔、8 孔和12 孔掩模在掺铁铌酸锂晶体中写入多重旋转对称结构的二维光子晶格。基于干涉理论,对多孔掩模干涉图样进行了数值模拟。通过实验成功地观测到了3 孔、4 孔、5孔、8 孔和12 孔布里渊区和远场衍射,并分析了布里渊区与远场衍射的对应关系,实验结果表明光子晶格图样和数值模拟一致。传统观测布里渊区的方法需要使用旋转漫反射器,观测布里渊区和写入晶格是不同的光路,而本方法只需在写入光路中加入衰减器便可观测到布里渊区,较之前的诸方法更为简单、稳定、易于调节。
Abstract
Utilizing the method of light- induced photonic lattices,we fabricate multiple rotational symmetry two- dimensional photonic lattices in LiNbO3:Fe crystal by masks with 3, 4, 5, 8 and 12 holes. Based on the interference principle, the multiple- beam interference pattern is obtained by numerical simulation. We observe the 3, 4, 5, 8 and 12 holes Brillouin- zone spectra and far- field diffraction patterns, and analyze the relationship between them. Experimental results are quite consistent with the simulation results. Traditional methods of observing Brillouin-zone spectra need rotating diffuser, using different optical paths to induce superlattices and observe Brillouin zone. We use attenuator only, so that the proposed method is simpler, more stable, and easier to adjust.
参考文献

[1] Yablonovitch E. Inhibited spontaneous emission in solid-state physics and electronics[J]. Phys Rev Lett, 1987, 58(20): 2059-2061.

[2] John S. Strong localization of photons in certain disordered dielectric super lattices[J]. Phys Rev Lett, 1987, 58(23): 2486-2489.

[3] 刘艳红, 董丽娟, 刘丽想, 等. 基于各向异性光子晶体带隙的窄带带通角度滤波器[J]. 光学学报, 2013, 33(8): 0823001.

    Liu Yanhong, Dong Lijuan, Liu Lixiang, et al.. Narrow bandpass angular filter based on anisotropic photonic band gap [J]. Acta Optica Sinica, 2013, 33 (8): 0823001.

[4] 武毓龙, 孙晓红, 刘薇. 十重准晶光子晶体缺陷模性质研究[J]. 激光与光电子学进展, 2013, 50(6): 062601.

    Wu Yulong, Sun Xiaohong, Liu Wei. Investigation on defect-mode property of ten-fold photonic quasicrysal[J]. Laser & Optoelectronics Progress, 2013, 50(6): 062601.

[5] 杨辉, 王智勇, 张伟, 等. 基于二维非线性光子晶体的全光开关特性[J]. 光学学报, 2012, 32(10): 1016003.

    Yang Hui, Wang Zhiyong, Zhang Wei, et al.. Properties of all- optical switch based on two- dimensional nonlinear photonic crystal[J]. Acta Optica Sinica, 2012, 32(10): 1016003.

[6] 柴路, 胡明列, 方晓惠, 等. 光子晶体光纤飞秒激光技术研究进展[J]. 中国激光, 2013, 40(1): 010101.

    Chai Lu, Hu Minglie, Fang Xiaohui, et al.. Advances in femtosecond laser technologies with photonic crystal fibers[J]. Chinese J Lasers, 2013, 40(1): 010101.

[7] Yablonovitch E, Gmitter T J, Leuung K M. Photonic band structure: the face- centered- cubic case employing nonspherical atoms[J]. Phys Rev Lett, 1991, 67(17): 2295-2298.

[8] 张辉, 赵晓峰, 唐清. 三维光子晶体的制备技术研究进展[J]. 功能材料, 2003, 2(34): 118-125.

    Zhang Hui, Zhao Xiaofeng, Tang Qing. The fabrication of 3D photonic crystal[J]. J Functional Materials, 2003, 34(2): 118-125.

[9] 姚东, 熊玉卿, 王济洲. 激光全息法制备三维光子晶体的研究进展[J]. 真空与低温, 2010, 16(3): 142-147.

    Yao Dong, Xiong Yuqing, Wang Jizhou. Progress on fabrication of three-dimensional photonic crystals by holographic lithography[J]. Vacuum and Cryogenics, 2010, 16(3): 142-147.

[10] 刘建静, 郝伟, 刘锴, 等. 光折变材料的带隙结构研究[J]. 量子光学学报, 2007, 13(1): 47-51.

    Liu Jianjing, Hao Wei, Liu Kai, et al.. FD TD simulation for photorefractive materials[J]. Acta Sinica Quantum Optica, 2007, 13(1): 47-51.

[11] Nan Zhu, Zhaohong Liu, Ru Guo. A method of easy fabrication of 2D light-induced nonlinear photonic lattices in self defocusing LiNbO3:Fe crystal[J]. Opt Mater, 2007, 30(4): 527-531.

[12] Wentao Jin, Yuanmei Gao. Optically induced two- dimensional photonic quasicrystal lattices in iron- doped lithium niobate crystal with an amplitude mask[J]. Appl Phys Lett, 2012, 101(14): 141104.

[13] S Liu, P Zhang, X Gan. Visualization of the Bragg re fl ection in complex photonic lattices by employing Brillouin zone spectroscopy[J]. Appl Phys B, 2010, 99(4): 727–731.

[14] Xinyuan Qi, Simin Liu, Guoquan Zhang, et al.. Gap solitons in optically induced two- dimensional square photonic lattices in LiNbO3:Fe crystals[J]. Appl Phys Lett, 2007, 91(13): 131111.

[15] G Bartal, O Cohen, H Buljan, et al.. Brillouin zone spectroscopy of nonlinear photonic lattices[J]. Phys Rev Lett, 2005, 94(16): 163902.

[16] Peng Zhang, Robert Egger, Zhigang Chen. Optical induction of three- dimensional photonic lattices and enhancement of discrete diffraction[J]. Opt Express, 2009, 17(15): 13151-13156.

[17] 范志新, 张浩苗, 马少龙. 激光散射实验[J]. 河北工业大学成人教育学院学报, 2006, 21(1): 13-15.

    Fan Zhixin, Zhang Haomiao, Ma Shaolong. The experiment of laser scattering[J]. J Adult Education School of Hebei University of Technology, 2006, 21(1): 13-15.

[18] 杨立森, 武瑞祥, 陆改玲, 等. 光诱导光子晶格折射率调制度的实验研究[J]. 光电子·激光, 2008, 19(11): 1530–1533.

    Yang Lisen, Wu Ruixiang, Lu Gai ling, et al.. Experimental research of refractive index modulation degree about optically induced photonic lattices[J]. J Optoelectronics·Laser, 2008, 19(11): 1530 – 1533.

[19] 刘孟孟. 掺铁铌酸锂中周期性及准周期性微结构的光诱导与研究[D]. 济南: 山东师范大学, 2013. 13.

    Liu Mengmeng. Optical Induction and Research of Periodic and Quasiperiodic Photonic Microstructures in Iron-Dped Lithium Niobate Crystal[D]. ShanDong: Shandong Normal University, 2013. 13.

[20] 殷建玲, 黄旭光, 刘颂豪. 准晶光子晶体特性及应用[J]. 激光与光电子学进展, 2010, 47(1): 011601.

    Yin Jianling, Huang Xuguang, Liu Songhao, et al.. Properties and applications of photonic quasicrystals[J]. Laser & Optoelectronics Progress, 2010,47(1): 011601.

[21] Yuanmei Gao, Mengmeng Liu. Design of two- dimensional 7- , 8- , 9- , 10- , 14- , 16- fold penrose- tiled photonic quasicrystals and mixed honeycomb[J]. Opt Eng, 2013, 52(5): 053401.

[22] 杨立森, 陈晓虎, 刘思敏. (2+1)维光折变波导阵列的制作[J]. 光子学报, 2002, 31(10): 1200-1204.

    Yang Lisen, Chen Xiaohu, Liu Simin. Fabrication of (2 + 1) dimensional photorefractive waveguides array[J]. Acta Photonica Sinica, 2002, 31(10): 1200-1204.

武一洁, 杨立森, 王龙飞, 李强, 施慧渊. 多重旋转对称结构光子晶格的实验研究[J]. 激光与光电子学进展, 2014, 51(3): 031902. Wu Yijie, Yang Lisen, Wang Longfei, Li Qiang, Shi Huiyuan. Experimental Study of Multiple Rotational Symmetry Photonic Lattices[J]. Laser & Optoelectronics Progress, 2014, 51(3): 031902.

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