光子学报, 2009, 38 (3): 556, 网络出版: 2010-07-16  

金属薄膜亚波长微结构的光束集束器件设计

Metal Thin Film Microstructure
作者单位
浙江大学 现代光学仪器国家重点实验室, 杭州 310027
摘要
利用时域有限差分方法,模拟了P偏振光高斯光束入射到金属银亚波长细缝与光栅结构的透射情况.由于表面等离子激元波的影响,对称光栅结构透射光呈现对称出射,而非对称结构可以实现小角度定方向的光束集束现象.借助公式推导法及Helmholtz互易定理,可设计出平行入射P偏振光的光束集束器件.由于高斯光束本身的发散性及近场分布的需要,针对高斯光束的器件在结构参量上缩小了12%.在对其他结构参量的优化的基础上,实现了针对633 nm高斯光束的对称出射及光束集束器件的设计.
Abstract
The finite-difference time-domain (FDTD) method was used to simulate the propagation of P polarized light Gaussian beam in a single subwavelength metallic(Ag) slit surrounded by gratings.Because of the effect of surface plasmons wave,slit with symmetric grating can realize symmetric diffraction,and special asymmetric structure can achieve off-angle beaming phenomenon.Through formula Derivation and Helmholtz reciprocity theorem,devices for parallel beam of P polarized light could be designed.With the Gaussian beam′s divergence and near-field distribution,the structural parameters of devices for Gaussian beam shrinks by 12%.On the basis of optimizating some other structures parameters,the design of symmetric diffracted and off-angle beaming effect device for 633 nm Gaussian beam were achieved.
参考文献

[1] BETHE H A.Theory of diffraction by small holes[J].Phys Rev,1944,66(7~8):163-182.

[2] . Extraordinary optical transmission through sub-wavelength hole arrays[J]. Nature, 1998, 391(12): 667-669.

[3] . Beaming light from a subwavelength aperture[J]. Science, 2002, 297: 820-822.

[4] . Optical near field in nanometallic slits[J]. Opt Express, 2002, 10(24): 1418-1424.

[5] . Surface plasmon resonant interference nanolithography technique[J]. Appl Phy Lett, 2004, 84(23): 4780-4782.

[6] . 基于表面等离子体共振的水质分析系统稳定性研究[J]. 光子学报, 2007, 36(7): 1268-1272.

    . Stability research of water quality analysis system based on surface plasmon resonance[J]. Acta Photonica Sinica, 2007, 36(7): 1268-1272.

[7] . Analysis of the transmission process through single apertures surrounded by periodic corrugations[J]. Opt Express, 2004, 12(16): 3964-3970.

[8] . Physical origin of directional beaming emitted from a subwavelength slit[J]. Phys Rev B, 2005, 71: 41405.

[9] . Beaming light from a subwavelength metal slit arrounded by dielectric surface gratings[J]. Opt Express, 2006, 14(8): 3503-3511.

[10] . Optical constants of the noble metals[J]. Phys Rev B, 1972, 6: 4370.

[11] 钟迪生.真空镀膜-光学材料的选择与应用[M].沈阳:辽宁大学出版社,2001:93.

    ZHONG Di-sheng.Vacuum coating – selection and application of optical materials[M].Shenyang:Liaoning University Publishers,2001:93.

[12] . 平面光波导结构的FDTD分析[J]. 光子学报, 2004, 33(3): 281-283.

    . FDTD analysis of planar optical waveguide structures[J]. Acta Photonica Sinica, 2004, 33(3): 281-283.

[13] . Analysis of retro-diffraction efficiency for etched diffraction gratings using a FDTD method[J]. Acta Photonica Sinica, 2002, 31(11): 1377-1381.

王保清, 郑臻荣, 顾培夫, 厉以宇. 金属薄膜亚波长微结构的光束集束器件设计[J]. 光子学报, 2009, 38(3): 556. WANG Bao-qing, ZHENG Zhen-rong, GU Pei-fu, LI Yi-yu. Metal Thin Film Microstructure[J]. ACTA PHOTONICA SINICA, 2009, 38(3): 556.

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