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毕业论文网 > 任务书 > 电子信息类 > 光电信息科学与工程 > 正文

基于亚波长狭缝的等离激元透镜任务书

 2020-07-02 10:07  

1. 毕业设计(论文)的内容和要求

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2. 参考文献

[1] Liang Feng, Kevin A. Tetz, Boris Slutsky, Vitaliy Lomakin, and Yeshaiahu Fainman, 揊ourier plasmonics: Diffractive focusing of in-plane surface plasmon polariton waves? APPLIED PHYSICS LETTERS 91, 081101 (2007). [2] Gilad M. Lerman, Avner Yanai, and Uriel Levy, 揇emonstration of Nanofocusing by the use of Plasmonic Lens Illuminated with Radially Polarized Light? Nano Lett. 9, 2139 (2009). [3] Ewold Verhagen, Albert Polman, and L. (Kobus) Kuipers, Nanofocusing in laterally tapered plasmonic waveguides, Opt.Express 16, 45 (2008). [4] F. J. Garca-Vidal, L. Martn-Moreno, H. J. Lezec and T. W. Ebbesen, 揊ocusing light with a single subwavelength aperture flanked by surface corrugations? APPLIED PHYSICS LETTERS, 83, 4500 (2003). [5] Fu Min Huang and Nikolay Zheludev et al., 揊ocusing of light by a nanohole array?APPLIED PHYSICS LETTERS 90, 091119 (2007). [6] Fu Min Huang, Tsung Sheng Kao, Vassili A. Fedotov, Yifang Chen, and Nikolay I. Zheludev, Nano Lett. 8, 2469 (2008). [7] Verslegers et al. Planar lenses based on nanoscale slit arrays in a metallic film. Nano Lett. 9, 235?38 (2009). [8] Haofei Shi, Changtao Wang, Chunlei Du, Xiangang Luo, Xiaochun Dong, Hongtao Gao, Beam manipulating by metallic nano-slits with variant widths, Opt.Express 13, 6815 (2005). [9] Changjun Min, Pei Wang, Xiaojin Jiao, Yan Deng and Hai Ming, Beam manipulating by metallic nano-optic lens containing nonlinear media, Opt.Express 15, 9541 (2007). [10] Yongqi Fu, Yu Liu, Xiuli Zhou1, Zongwei Xu, Fengzhou Fang, Experimental investigation of superfocusing of plasmonic lens with chirped circular nanoslits, Opt.Express, 18, 3438 (2010). [11] J. T. Shen, Peter B. Catrysse, and Shanhui Fan, Mechanism for Designing Metallic Metamaterials with a High Index of Refraction, Phys.Rev.Lett. 94, 197401 (2005). [12] Stephane Collin, Fabrice Pardo and Jean-Luc Pelouard, Waveguiding in nanoscale metallic apertures, Opt.Express 15, 4310 (2007). [13] Lin, L., Goh, X. M., McGuinness, L. P. Roberts, A. Plasmonic lenses formed by two-dimensional nanometric cross-shaped aperture arrays for Fresnel region focusing. Nano Lett. 10, 1936?940 (2010). [14] Gao, H., Hyun, J. K., Lee, M. H., Yang, J. C., Lauhon, L. J. Odom, T. W. Broadband plasmonic microlenses based on patches of nanoholes. Nano Lett. 10, 4111?116 (2010). [15] Ishii, S., Kildishev, A. V., Shalaev, V. M., Chen, K. P. Drachev, V. P. Metal nanoslit lenses with polarization-selective design. Opt. Lett. 36, 451?53 (2011). [16] Yu, N. et al. Light propagation with phase discontinuities: generalized laws of reflection and refraction. Science 334, 333?37 (2012). [17] Ni, X., Emani, N. K., Kildishev, A. V., Boltasseva, A. Shalaev, V. M. Broadband light bending with plasmonic nanoantennas. Science 335, 427(2012). [18] Xianzhong Chen, Lingling Huang, Holger Mu╤lenbernd, Guixin Li, Benfeng Bai, Qiaofeng Tan,Guofan Jin, Cheng-Wei Qiu, Shuang Zhang1 Thomas Zentgraf, Nat.Commun. 3, 1198 (2012). [19] Mohammadreza Khorasaninejad, Wei Ting Chen, Robert C. Devlin, Jaewon Oh,Alexander Y. Zhu, Federico Capasso, Metalenses at visible wavelengths: Diffraction-limited focusing and subwavelength resolution imaging, Science 352, 1190 (2016).

3. 毕业设计(论文)进程安排

12#26376;22#26085;-1#26376;12#26085; #25991;#29486;#38405;#35835;#65292;#32763;#35793;#35770;#25991;1#31687;#65292;#20889;#24320;#39064;#25253;#21578; 2#26376;25#26085;-3#26376;10#26085; #35299;#26512;#35745;#31639;#21333;#23618;#20171;#36136;#34180;#33180;#30340;#26377;#25928;#25240;#23556;#29575;#21644;#30456;#20301;#21464;#21270; 3#26376;11#26085;-3#26376;30#26085; #35745;#31639;#21051;#26377;#29421;#32541;#30340;#37329;#23646;#34180;#33180;#30340;#26377;#25928;#25240;#23556;#29575;#21644;#30456;#20301; 4#26376;1#26085;-4#26376;30#26085; #35774;#35745;#31561;#31163;#28608;#20803;#36879;#38236;#65292;#24182;#21033;#29992;CST#25968;#20540;#27169;#25311; 5#26376;1#26085;-6#26376;10#26085; #25776;#20889;#35770;#25991;#21644;#27605;#19994;#31572;#36777;#30340;PPT#65292;#31572;#36777;

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