1.Bo-Wen Cao, Cheng Li, Wei-Jie Shi, Cai-Qin Han, Ying Wu*, and Chang-Chun Yan*, Large-area mid-infrared broadband absorbers based on spiral ITO resulting from the combination of two different broadening absorption methods, Opt. Express, 29(21), 34427 -34440 ( 2021). 2.Wentao Zhang (张文涛), Weijie Shi (施维捷), Hui Guo (郭 慧), and Changchun Yan (闫长春)*, Mid-infrared flat-topped broadband chiral helix metamaterials based on indium tin oxide and their chiral properties, Chin. Opt. Lett., 19(11), 111601-(1-5) ( 2021). 3.Yuhang Song, Qin Wang, Ying Luo, Wenxi Cao, Zijin Cao, Changchun Yan, Aixia Lu*, and Caiqin Han*, Preparation of a silver nano-tripod structure by a tilting angle deposition technique and its SERS application,Opt. Express, 29(9), 13968-13977 ( 2021). 4.朱叶欣,李亚楠,施维捷,张文涛,闫长春*, 基于氧化铟锡的风扇型中红外手性超材料及其圆二向色性, 中国光学,13(4),722-727,2020. 5.Ya-Li Zhu, Bo-Wen Cao, Jing-Wen li, Ying Wu, Ai-Xia Lu, Lin-Yong Qian, Cai-Qin Han*, and Chang-Chun yan*, L-shaped ITO structures fabricated by oblique angle deposition technique for mid-infrared circular dichroism, Opt. Express, 27(23), 33243- 33250 ( 2019). 6.Linyong Qian*, Kangni Wang, Dmitry A. Bykov, Yafang Xu, Lin Zhu, and Changchun Yan*, Improving the sensitivity of guided-mode resonance sensors under oblique incidence condition, Opt. Express, 27(21), 30563- 30575 ( 2019). 7.Hong-Kai Dai, Cheng-Bei Xie, Hui-Chao Liang, Lin-Yong Qian, Cai-Qin Han,* Chang-Chun Yan,* and Yi-Ping Zhao, Growth and optical properties of Ag-Ti composite nanorods based on oblique angle co-deposition technique, Opt. Express, 26(9), 12022-12037 ( 2018). 8.Hong-feng Wang, Jun-Xian Shi, Lin-Yong Qian, Chang-Chun Yan*, Cai-Qin Han*, and Yi-Ping Zhao, Large-area broadband optical absorber fabricated by shadowing sphere lithography, Opt. Express, 26(6), 7507-7515 ( 2018). 9.Junxian Shi, Jingshan Qi, Linyong Qian, Caiqin Han, and Changchun Yan*, Goos–Hänchen shifts in reflective phase-gradientproduced Metasurfaces,Chin. Opt. Lett., 16(6), 061602(2018). 10.Dongdong Li, Jingjing Zhang, Changchun Yan*, Zhengji Xu, and Dao Hua Zhang, Subwavelength dielectric nanorod chains for energy transfer in the visible range, Opt. Lett., 42:4223 (2017). 11.Rong-Yuan Zou, Jun-Xian Shi, Hong-Kai Dai, Hong-Feng Wang, Lin-Yong Qian, Xing-Hai Wang, Cai-Qin Han, and Chang-Chun Yan*, Switchable reflection/transmission utilizing polarization on a plasmonic structure consisting of self-assembly polystyrene spheres with silver patches, Opt. Express, 25(8):9502-9510 (2017). 12.Ying Han, Jian-An Huang, Xiao-Ying Liu, Xue-Jin Zhang, Jun-Xian Shi, and Chang-Chun Yan*,Polarization-independent broadband plasmonic absorber based on a silicon-nanowire array decorated by gold nanoparticles at the optical regime, Opt. Express, 24(9):9178-9186 (2016). 13.Chen Dong, Bao Li, Han-Xiao Li, Hui Liu, Meng-Qi Chen, Dong-Dong Li, Chang-Chun Yan*, Dao-Hua Zhang, Polarization-insensitive magnetic quadrupole-shaped and electric quadrupole-shaped Fano resonances based on a plasmonic composite structure, Chin. Phys. Lett., 7(33):074201(2016). 14.Jie-Bing Tian, Chang-Chun Yan,* Cheng Wang, Ying Han, Rong-Yuan Zou, Dong-Dong Li, Zheng-Ji Xu, and Dao-Hua Zhang, Actively tunable Fano resonances based on colossal magneto-resistant metamaterials, Opt. Lett., 40(7):1286-1289 (2015). 15.Cheng Wang, Changchun Yan*, Jiebing Tian, Ying Han, Rongyuan Zou , Dongdong Li, and Daohua Zhang, Actively tunable metamaterial resonators based on colossal magnetoresistance in the infrared regime, Chin.Opt.Lett., 13(5):051601 (2015). 16.Jun-Xian Shi, Wen-Chao Zhang, Wan Xu, Qing Zhu, Xia Jiang, Dong-Dong Li, Chang-Chun Yan*, Dao-Hua Zhang, A Polarization-Insensitive Broadband,Metamaterial Absorber at the Optical Regime, Chin.Phys.Lett., 32(9):094204 (2015). 17.An Yang, Chang-Chun Yan*, Jie-Bing Tian, Cheng Wang,, Ying Han, Dao Hua Zhang, Dong-Dong Li, Zheng-Ji Xu, A sensitive sensor with a double U-shaped ring-based metamaterial, Appl. Phys. A, 117(2): 537-540 (2014). 18.An Yang, Changchun Yan*, Jiebing Tian, Cheng Wang, Guiming Li, and Dao Hua Zhang, “An analog of double electromagnetically induced transparency with extremely high group indexes”, Chin. Opt. Lett., 11(5), 051602, 2013. 19.Changchun Yan*, Dao Hua Zhang, Zhengji Xu, Dongdong Li, and An Yang, “A multi-layered split ring metamaterial for a multiwavlength and tunable lasing spaser”, J. Opt., 14(4), 045101, 2012. 20.Changchun Yan, Dao Hua Zhang*, and Dongdong Li, “Spherical metallic nanoparticle arrays for super-resolution imaging”, J. Appl. Phys., 109(6), 063105, 2011. 21.Changchun Yan, Dao Hua Zhang*, Dongdong Li, Haijiao Bian, Zhengji Xu, and YuekeWang, “Metal nanorod-based metamaterials for beam splitting and a subdiffraction-limited dark hollow light cone”, J. Opt., 13(8), 085102, 2011. 22.Changchun Yan, Dao Hua Zhang*, Yuan Zhang, Dongdong Li, and M. A. Fiddy, “Metal-dielectric composites for beam splitting and far-field deep sub-wavelength resolution for visible wavelengths”,Opt. Express, 18(14), 14794-14801, 2010. 23.Changchun Yan, Dao Hua Zhang*, Dongdong Li, and Yuan Zhang, “Dual refractions in metal nanorod-based metamaterials”, J. 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