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Frequency selective surface based on metallic mesh can realize the physical properties of both high infrared transmittance and millimeter-wave band-pass filter. In order to improve the optical transmittance, reduce surface resistance and suppress the effect of high order diffraction energy on the imaging quality of the optical system, a new design of frequency selective surface based on hybrid period metallic mesh is obtained. In this paper, the diffraction intensity distribution and surface current of frequency selective surface are analyzed based on metallic mesh. Simulation and experimental results show that frequency selective surface based on hybrid period metallic mesh realizes a stable millimeter-wave band-pass filter property, at the same time, it obtains 5% increase of infrared transmittance and 4 Ω reduce of surface resistance. New design of frequency selective surface based on hybrid period metallic mesh effectively suppresses the effect of high order diffraction energy on the imaging quality of the optical system.
[1] Zhang J, Gao J S, Xu N X 2013 Acta Phys. Sin. 62 147304 (in Chinese) [张建, 高劲松, 徐念喜 2013 62 147304]
[2] Yu M, Gao J S, Xu N X 2013 Acta Phys. Sin. 62 204208 (in Chinese) [于淼, 高劲松, 徐念喜 2013 62 204208]
[3] Zhu H X, Feng X G, Zhao J L, Liang F C, Wang Y S, Chen X, Gao J S 2010 Acta Opt. Sin. 30 2766 (in Chinese) [朱华新, 冯晓国, 赵晶丽, 梁凤超, 王岩松, 陈新, 高劲松 2010 光学学报 30 2766]
[4] Liu Y M, Tan J B 2013 Opt. Express 21 4228
[5] Yu M, Xu N X, Liu H, Gao J S 2014 AIP Adv. 4 027112
[6] Jacoby K T, Pieratt M W, Halman J I, Ramsey K A 2009 Proc. SPIE 7302
[7] Halman J I, Ramsey K A, Thomas M, Griffin A 2009 Proc. SPIE 7302
[8] Xu N X, Gao J S, Feng X G 2014 Acta Phys. Sin. 63 138401 (in Chinese) [徐念喜, 高劲松, 冯晓国 2014 63 138401]
[9] Wang X Z, Gao J S, Liu H, Xu N X 2014 Chin. Phys. B 23 047303
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[1] Zhang J, Gao J S, Xu N X 2013 Acta Phys. Sin. 62 147304 (in Chinese) [张建, 高劲松, 徐念喜 2013 62 147304]
[2] Yu M, Gao J S, Xu N X 2013 Acta Phys. Sin. 62 204208 (in Chinese) [于淼, 高劲松, 徐念喜 2013 62 204208]
[3] Zhu H X, Feng X G, Zhao J L, Liang F C, Wang Y S, Chen X, Gao J S 2010 Acta Opt. Sin. 30 2766 (in Chinese) [朱华新, 冯晓国, 赵晶丽, 梁凤超, 王岩松, 陈新, 高劲松 2010 光学学报 30 2766]
[4] Liu Y M, Tan J B 2013 Opt. Express 21 4228
[5] Yu M, Xu N X, Liu H, Gao J S 2014 AIP Adv. 4 027112
[6] Jacoby K T, Pieratt M W, Halman J I, Ramsey K A 2009 Proc. SPIE 7302
[7] Halman J I, Ramsey K A, Thomas M, Griffin A 2009 Proc. SPIE 7302
[8] Xu N X, Gao J S, Feng X G 2014 Acta Phys. Sin. 63 138401 (in Chinese) [徐念喜, 高劲松, 冯晓国 2014 63 138401]
[9] Wang X Z, Gao J S, Liu H, Xu N X 2014 Chin. Phys. B 23 047303
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