[1] Young Joon Yoo, Sanghyun Ju, Sang Yoon Park, et al. Metamaterial absorber for electromagnetic waves in periodic water droplets[J]. Scientific Reports, 2015, 5(10):1-8.
[2] Li Zhiyuan, Li Jiafang. Recent progress in engineering and application of surface plasmon resonance in metal nanostructures[J]. Chinese Sci Bull (Chinese Ver), 2011, 56(32):2631-2661. (in Chinese)
[3] Koray Aydin, Vivian E Ferry, Ryan M Briggs, et al. Broadband polarization-independent resonantlight absorption using ultrathin plasmonic super absorbers[J]. Nature Communications, 2011, 2(1):193-198.
[4] Ren Fanghui, Wang Xiangyu, Wang Alan X. Thermo-optic modulation of plasmonic bandgap on metallic photonic crystal slab[J]. Applied Physics Letters, 2013, 102(18):1-5.
[5] Gustav Edman Jonsson, Vladimir Miljkovic, Alexandre Dmitriev. Nanoplasmon-enabled macroscopic thermal management[J]. Scientific Reports, 2014, 4(22):5111-5115.
[6] Ji Dengxin, Song Haomin, Zeng Xie, et al. Broadband absorption engineering of hyperbolic metafilm patterns[J]. Scientific Report, 2014, 4(3):1-2.
[7] Mo Lei, Yang Liu, Lee El Hang, et al. High-efficiency plasmonic metamaterial selective emitter based on an optimized spherical core-shell nanostructure for planar solar thermophotovoltaics[J]. Plasmonics, 2015, 10:529-538.
[8] Rhee J Y, Yoo Y J, Kim K W, et al. Metamaterial-based perfect absorbers[J]. Journal of Electromagnetic Waves and Applications, 2014, 28(13):1541-1580.
[9] Chen Xuegang, Ye Ying, Cheng Jipeng. Recent progress in electromagnetic wave absorbers[J]. Journal of Inorganic Materials, 2011, 26(5):449-457. (in Chinese)
[10] Zhang Peng, Zhu Qiang, Qin Heyong, et al. Recent process of high temperature materials for aero-engines[J]. Materials Review A, 2014, 28(6):27-37. (in Chinese)
[11] Yoo Young Joon, Kim Young Ju, Lee Young Pak. Perfect absorbers for electromagnetic wave, based on metamaterials[J]. Journal of the Korean Physical Society, 2015, 67(7):1095-1109.