收稿日期: 2004-06-08
修回日期: 2004-10-15
网络出版日期: 2005-07-15
基金资助
国家重点基础研究项目 (973)(19994506)资助
Optical Polarization of Ordered Silver Nanowire Arrays : Theoretical Investigation
Received date: 2004-06-08
Revised date: 2004-10-15
Online published: 2005-07-15
张俊喜 , 张立德 , 常明 , 燕友果 , 陆启飞 . 银纳米线有序阵列的光偏振的理论研究[J]. 中国科学院大学学报, 2005 , 22(4) : 401 -405 . DOI: 10.7523/j.issn.2095-6134.2005.4.001
We report the numerical calculation results of ordered silver nanowire arrays embedded in anodic alumina membrane (AAM). Furthermore, the reason of optical polarization of the arrays in the visible and infrared wavelength regions is analyzed. To provide the optimal parameters for the design of nanowire grid polarizers at the wavelengths,we can obtain larger extinction ratios and smaller insertion losses by properly selecting the nanowire diameter and spacing.
[1] Elhoussine F, Mátéfi2Tempfli S, Encinas A, et al. Conductance quantization in magnetic nanowires electrodeposited in nanopores. Appl. Phys. Lett. 2002, 81 (9) :1681~1683
[2] Mbindyo JKN, Mallouk TE, Mattzela JB, et al. Template synthesis of metal nanowires containing monolayer molecular junctions. J. Am. Chem.Soc. 2002,124 (15) :4020~4026
[3] Huang Y, Duan X, Lieber C, et al. Directed Assembly of One2Dimensional Nanostructures into Functional Networks. Science, 2001, 291 (5504) :630~633
[4] Huang MH, Mao S, Yang P, et al. Room2temperature ultraviolet nanowire nanolasers. Science, 2001, 292 (5523) :1897~1899
[5] Li Y, Meng GW, ZhangLD, et al. Ordered semiconductor ZnO nanowire arrays and their photoluminescence properties. Appl. Phys. Lett. 2000,76 (15) :2011~2013
[6] Zheng MJ, Zhang LD, Li GH, et al. Ordered indium2oxide nanowire arrays and their photoluminescence properties. Appl. Phys. lett. 2001, 79(6) :839~841
[7] Lei Y, Zhang LD, Meng GW, et al. Preparation and photoluminescence of highly ordered TiO2 nanowire arrays. Appl. Phys. Lett. 2001,78 (8) :1125~1127
[8] Liu C, Zapien JA, Lee ST, et al. High2density, ordered ultraviolet light2emitting ZnO nanowire arrays. Adv. Mater. 2003,15 (10) :838~841
[9] Zheng M, Zhang L, Zhang X, et al. Fabrication and optical absorption of ordered indium oxide nanowire arrays embedded in anodic alumina membranes. Chem. Phys. Lett. 2001,334 (426) :298~302
[10] Lin Y, Xie T, ZhangLD, et al. Ordered nickel oxide nanowire arrays and their optical absorption properties. Chem. Phys. Lett. 2003,380 (526) :521~525
[11] Lin Y, Wu GS, Zhang LD, et al. Fabrication and optical properties of TiO2 nanowire arrays made by sol2gel electrophoresis deposition into anodicalumina membranes. J. Phys. : Condens. Matter,2003,15 (17) :2917~2922
[12] Zeng H, Skomski R, Menon L, et al. Structure and magnetic properties of ferromagnetic nanowires in self2assembled arrays. Phys. Rev. B, 2002,65 (13) :134426P1~134426P6
[13] Paulus PM, Luis F, Kr; ll M, et al. Low2temperature study of the magnetization reversal and magnetic anisotropy of Fe, Ni, and Co nanowires. J. Magn. Magn. Mater. 2001, 224 (2) :180~196
[14] Wang YW, Zhang LD, Meng GW, et al. Fabrication of ordered ferromagnetic2nonmagnetic alloy nanowire arrays and their magnetic property dependence on annealing temperature. J. Phys. Chem. B, 2002,106 (10) :2502~2507
[15] Guo Y, Wan L, Bai C, et al. Ordered Ni2Cu nanowire array with enhanced coercivity. Chem. Mater. 2003,15 (3) :664~667
[16] Vila L, Vincent P, PirauxL, et al. Growth and field2emission properties of vertically aligned cobalt nanowire arrays. Nano Lett. 2004,4 (3) :521~524
[17] Chen J, Deng SZ, Xu NS, et al. Field emission from crystalline copper sulphide nanowire arrays. Appl. Phys. Lett. 2002,80 (19) :3620~3622
[18] Zhang LD, Mou JM. Nanomaterials and Nanostructures. Beijing :Science Press,2001 (in Chinese)
[19] Pang YT, Meng GW, Zhang LD, et al. Silver nanowire array infrared polarizers. Nanotechnology,2003,14 (1) :20~24
[20] Pang YT, Meng GW, ZhangLD, et al. Arrays of ordered Pb nanowires and their optical properties for laminated polarizers. Adv. Funct. Mater. 2002, 12 (10) :719~722
[21] Saito M, Miyagi M. Anisotropic optical loss and birefringence of anodized alumina film. J. Opt. Soc. Am. A,1989,6 (12) :1895~1900
[22] Palik ED, Handbook of Optical Constants of Solids. New York :Academic Press,1985. 356~357
[23] Lang ML, Wolfe WL. Optical constants of fused silica and sapphire from 013 to 25μm. Appl. Opt. 1983,22 (9) :1267~1268
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