干涉型偏振器及广义马吕斯定律的实验研究任务书

 2021-10-23 21:45:54

1. 毕业设计(论文)的内容和要求

在金属屏上刻画周期阵列的、正交的矩形槽和矩形孔结构可构造新型的干涉型偏振器,该偏振器不遵循经典的马吕斯定律。

这一效应我们已经在红外波段进行了理论研究。

本课题将在微波段构造该偏振器并理论和实验研究其偏振效应,揭示微波透射效率与入射波偏振角度的依赖关系,验证广义的马吕斯定律。

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2. 参考文献

[1] 王振林,物理学进展 29, 278 (2009).[2] Baida F I, Boutria M, Oussaid R and Van Labeke D 2011 Enhanced-transmission metamaterials as anisotropic plates Phys. Rev. B 84 035107[3] Huang C P, Hua J Y, Zhang Y and Yin X G 2017 Transmissive and efficient 90 polarization rotation with a single-layer plasmonic structure Appl. Phys. Express 10 112201[4] Jiang Z H, Lin L, Ma D, Yun S, Werner D H, Liu Z and Mayer T S 2014 Broadband and wide field-of-viewplasmonic metasurface-enabled waveplates Sci. Rep. 4 07511[5] Wen D, Yue F, Zhang C, Zang X, Liu H, Wang W and Chen X 2017 Plasmonic metasurface for optical rotation Appl. Phys.Lett. 111 023102[6] Astilean S, Lalanne P and Palamaru M 2000 Light transmission through metallic channels much smaller than the wavelength Opt. Commun. 175 26573[7] Klein Koerkamp K J, Enoch S, Segerink F B, van Hulst N F and Kuipers L 2004 Strong influence of hole shape on extraordinary transmission through periodic arrays of subwavelength holes Phys. Rev. Lett. 92 183901[8] Huang C P, Wang Q J, Yin X G, Zhang Y, Li J Q and Zhu Y Y 2014 Break through the limitation of malus law with plasmonic polarizers Adv. Opt. Mater. 2 7238[9] Romain X, Baida F and Boyer P 2016 Extended malus law with terahertz metallic metamaterials for sensitive detection with giant tunable quality factor Phys. Rev. 94 045407[10] Zhang C, Pfeiffer C, Jang T, Ray V, Junda M, Uprety P, Podraza N, Grbic A and Guo L J 2016 breaking malus law: highly efficient, broadband, and angular robust asymmetric light transmitting metasurface Laser Photonics Rev. 10 7918[11] Cong L, Cao W, Zhang X, Tian Z, Gu J, Singh R, Han J and Zhang W 2013 A perfect metamaterial polarization rotator Appl. Phys. Lett. 103 171107[12] Fan R H, Zhou Y, Ren X P, Peng R W, Jiang S C, Xu D H, Xiong X, Huang X R and Wang M 2015 Freely tunable broadband polarization rotator for terahertz waves Adv. Mater. 27 12016[13] Zhang Y, Zhu J Z, Huang C P and Ma S J 2017 Wide-band and high-efficiency 90 polarization rotator based on tri-layered perforated metal films J. Lightwave Technol. 35 481723[14] Huang C P 2015 Efficient and broadband polarization conversion with the coupled metasurfaces Opt. Express 23 3201524[15] Huang CP, Wang Y, and Zhang Y, 2019 Interference-type plasmonic polarizers and generalized law of Malus 21, 105001.

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