【正文】
f a flat metallic surface coated with a monolayer array of latex spheres [J]. Phys. Lett. A, 2010,374:1059 [33] X. D. Yu, L. Shi, D. Z. Han, High quality factor matallodielectric hybrid plasmonicphotonic crystals [J]. Adv. Funct. Mater., 2010,20:1910[34] L. Shi, H. W. Yin, X. L. Liu, Direct observation of isofrequency contour of surface modes in defective photonic crystals in real space [J]. Appl. Phys. Lett., 2010, 97:251111[35] X. L. Zhu, L. Shi. X. H. Liu, A mechanically tunable plasmonic structure paosed of a monolayer array of metalcapped colloidal spheres on an elastomeric substrate [J]. Nano Res., 2010, 3: 807[36] C. Zhang, X. Zhu, L. Zhou, Morphology tunable pinning force and evaporation modes of water droplets on PDMS spherical cap micronarrays [J]. Chem. Phys. Lett., 2011[37] S. Coyle, M. C. Netti, J. J. Baumberg, Confined plasmons in metallic nanocavitities [J]. Phycs. Rev. Lett., 2011,87:176801[38] S. Y. Chou, . Krauss, P. J. Renstrom, Imprint of sub25nm vias and trenches in polymers [J]. Appl. Phys. Lett., 1995, 67:3114 [39] S. Y. Chou, . Krauss, P. J. Renstrom, Imprint lithography with 25nanometer resolution [J]. Science, 1996, 272:85[40] S. Lacica, O. Inganas, Modeling Electrical transport in blend heterojunction organic solar cells [J]. Journal of Applied Physics, 2005, 97:124901 [41] P. E. Shaw, A. Ruseckas, I. D. W. Samuel, Exciton diffusion measurements in poly(3hexylthiophene) [J]. Adv. Mater., 2008, 20:3516 [42] D. E. Maikov, C. Tanase, Simultaneous enhancement of charge transport and exciton diffusion in poly(pphenylenevinylene) derivatives [J]. Physical Review B, 2005, 72:045217[43] P. Peumans, A. Yakimov, Smallweight organic thinfilm photodetectors and solar cells [J]. Journal of Applied Physics, 2003,93:3693 [44] G. Li, V. Shrotriya, Y. Yang, Investigation of Annealing effects and film thickness dependence of polymer solar cells based on poly(3hexylthiophene) [J]. Journal of Applied Physics, 2005, 98:043704[45] D. Madzharov, R. Dewan, D. Knipp, Influence of front and back grating on light trapping in microcrystalline thinfilm silicon solar cells [J]. Optics Express, 2011, 19:95 [46] J. Zhu, Z. F. Yu, Optical absorption enhancement in amorphous silicon nanowire and nanocone arrays [J]. Nano Lett., 2009,9:279 [47] L. Zeng, Y. Yi, C. Hong, Efficinecy enhancement in Si solar cells by textured photonic crystal back reflactor [J]. Applied Physics Letters, 2006, 89:111111[48] W. Wang, S. M. Wu, K, Reinhardt, , Broadband light absorption enhancement in thinfilm silicon solar cells [J]. Nano Lett., 2010, 10:2012 [49] V. E. Ferry, L. A. Sweatlock, D. Pacifici, H. A. Atwater, Plasmonic Nanostructure Design for efficient light coupling into solar cells [J]. Nano Lett., 2008, 8:4391[50] W. L. Bai, Q. Q. Gan, Broadband shortrange surface plasmon strctures for absorption enhancement in organic photovoltaics [J]. Optics Express, 2010, 18:62018