量子电子学报, 2007, 24 (5): 0529, 网络出版: 2010-06-13  

光子晶体THz器件的研究进展

Research progress of the photonic crystal Terahertz devices
作者单位
电子科技大学物理电子学院,四川 成都 610054
摘要
近年来,随着国际上掀起的太赫兹(Terahertz,THz)研究热,太赫兹科学技术的发展更为迅速。但是,对于THz的各种功能器件,利用基于经典电磁理论的微波技术手段或者利用基于量子理论方法的光学技术手段都遇到了很大的困难。90年代末,随着频率禁带处在THz波段的光子晶体(Photonic crystal,PC)制作方法和技术的提高,基于光子晶体的THz器件应运而生。为此,就国际上在光子晶体THz滤波器,光子晶体THz波导,光子晶体THz光纤和光子晶体THz谐振腔方面所做的主要工作和研究成果进行了较详细的论述分析及归纳总结,并对光子晶体THz器件未来的发展提出了几点看法。
Abstract
Recent years,much attention has been paid on Terahertz and a fast development on terahertz science and technology has been achieved. However,there is much difficulty to fabricate terahertz devices with classical electromagnetic microwave technology or optical means based on quantum mechanics. In the later nineties,with the improvement of manufacture method on photonic crystal in terahertz band gap,terahertz devices based on photonic crystal emerged. Therefore,an overview on photonic crystal terahertz devices,such as photonic crystal Terahertz filter,photonic crystal Terahertz waveguide,photonic crystal Terahertz fiber and photonic crystal Terahertz cavity is presented and analyzed,and some suggestible perspectives are also given in the end.
参考文献

[1] Siegel P H. Terahertz technology [J].IEEE Trans. Microwave Theory Tech.,2002,50(3): 910-928.

[2] Nagel M,Bolivar P H,Brucherseifer M,et al. Integrated THz technology for label-free genetic diagnositics [J].Appl. Phys. Lett.,2002,80: 154-156.

[3] Frankel M Y,Gupta S,Valdmanis J A,et al. Terahertz attenuation and dispersion characteristics of coplanar transmission lines [J].IEEE Trans. Microwave Theory Tech.,1991,39(6): 910-916.

[4] Yablonovitch E. Inhibited spontaneous emission in solid-state physics and electronics [J].Phys. Rev. Lett.,1987,58(20): 2059-2062.

[5] Deng Kaifa,Shi Dufang,Jiang Meiping,et al. Progress in the study of photonic crystal [J].Chinese Journal of Quantum Electronics(量子电子学报),2004,21(5): 556-564(in Chinese).

[6] Wang Huajuan,Bi Gang,Yang Dongxiao. Characteristic of metallic photonic crystal in THz range [J].Journal of Microwaves(微波杂志),2005,21(1): 31-34(in Chinese).

[7] Nathan J,Mark S. Two-dimensional terahertz photonic crystal fabricated by deep reactive ion etching in Si [J].Appl. Phys. Lett.,2003,83: 21-23.

[8] Hideaki K,Naoki T,Hirotaka K,et al. Terahertz wave dispersion in two-dimensional photonic crystal [J].Phy.Rev. B,2001,64: 045202-1-045202-7.

[9] Takagi K,Seno K,Kawasaki A. Fabrication of a three-dimensional terahertz photonic crystal using monosized spherical particles [J].Appl. Phys. Lett.,2004,85: 3681-3683.

[10] Sergey Savel'ev,Rakhmanov A L,et al. Using Josephson vortex lattices to control terahertz radiation [J].Phys.Rev. Lett.,2005,94: 157004-1-157004-4.

[11] Nemec H,Duvillaret L,Garet F. Thermally tunable filter for terahertz range based on a one-dimensional photonic crystal with a defect [J].J. Appl. Phys.,2004,96(8): 4072-4075.

[12] Katsarakis N,Bender M,Singleton L,et al. Twodimensional metallic photonic band-gap crystals fabricated by LiGa [J].Microsystem Technologies,2002,8: 74-77.

[13] Bingham A,Zhao Y G,Grischkowsky D. THz parallel plate photonic waveguide[J].Appl. Phys. Lett.,2005,87:051101-1-051101-3.

[14] Lin C C,Chen C H,et al. Wavelength scale terahertz two-dimensional photonic crystal waveguides [J].Opt.Express,2004,12(23): 5723-5728.

[15] Han H,Park H,Cho M. Terahertz pulse propagation in a plastic photonic crystal fiber [J].Appl. Phys. Lett.,2002,80(15): 2634-2636.

[16] Coto M,Quema A,Takahashi H,et et. Teflon photonic crystal fiber as terahertz waveguide [J].Jpn. J. Appl.Phys.,2004,43: 317-319.

[17] Sirigiri J R. Photonic-band-gap resonator gyrotron [J].Phys. Rev. Lett.,2001,86(24): 5628-5631.

[18] Jin C,Cheng B,Li Z,et al. Two dimensional metallic photonic crystal in the THz range [J].Opt. Commun.,1999,166: 9-13.

[19] Wang Shaowei,Lu Wei,Chen Xiaoshuang,et al. Two-dimentional photonic crystal at THz frequency constructed by metal-coated cylinders [J].J. Appl. Phys.,2003,93(11): 9401-9403.

[20] Zhang Yao,Li Zhangjian,Li Baojun. Multimode interference effect and self-imaging principle in two-dimensional silicon photonic crystal waveguides for terahertz waves [J].Opt. Express,2006,14(7): 2679-2689.

[21] Wang Liang,Yang Dongxiao,Chang Qing. A new design for terahertz photonic crystal fiber using the finite difference time domain method [J].Progress in Electromagnetics Research Symposium,2005,22-26.

亓丽梅, 杨梓强, 高喜, 梁正. 光子晶体THz器件的研究进展[J]. 量子电子学报, 2007, 24(5): 0529. QI Li-mei, YANG Zi-qiang, GAO Xi, LIANG Zheng. Research progress of the photonic crystal Terahertz devices[J]. Chinese Journal of Quantum Electronics, 2007, 24(5): 0529.

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!