[1] |
Zhang Cai-Xia, Ma Xiang-Chao, Zhang Jian-Qi.Theoretical study on surface plasmon and hot carrier transport properties of Au(111) films. Acta Physica Sinica, 2022, 71(22): 227801.doi:10.7498/aps.71.20221166 |
[2] |
Liu Liang, Han De-Zhuan, Shi Lei.Plasmonic band structures and its applications. Acta Physica Sinica, 2020, 69(15): 157301.doi:10.7498/aps.69.20200193 |
[3] |
Wu Han, Wu Jing-Yu, Chen Zhuo.Strong coupling between metasurface based Tamm plasmon microcavity and exciton. Acta Physica Sinica, 2020, 69(1): 010201.doi:10.7498/aps.69.20191225 |
[4] |
Chu Pei-Xin, Zhang Yu-Bin, Chen Jun-Xue.Surface plasmon induced transparency in coupled microcavities assisted by slits. Acta Physica Sinica, 2020, 69(13): 134205.doi:10.7498/aps.69.20200369 |
[5] |
Zhou Qiang, Lin Shu-Pei, Zhang Pu, Chen Xue-Wen.Quasinormal mode analysis of extremely localized optical field in body-of-revolution plasmonic structures. Acta Physica Sinica, 2019, 68(14): 147104.doi:10.7498/aps.68.20190434 |
[6] |
Liu Zi, Zhang Heng, Wu Hao, Liu Chang.Enhancement of photoluminescence from zinc oxide by aluminum nanoparticle surface plasmon. Acta Physica Sinica, 2019, 68(10): 107301.doi:10.7498/aps.68.20190062 |
[7] |
Yu Hua-Kang, Liu Bo-Dong, Wu Wan-Ling, Li Zhi-Yuan.Surface plasmaons enhanced light-matter interactions. Acta Physica Sinica, 2019, 68(14): 149101.doi:10.7498/aps.68.20190337 |
[8] |
Zhang Bao-Bao, Zhang Cheng-Yun, Zhang Zheng-Long, Zheng Hai-Rong.Surface plasmon mediated chemical reaction. Acta Physica Sinica, 2019, 68(14): 147102.doi:10.7498/aps.68.20190345 |
[9] |
Li Pan.Research progress of plasmonic nanofocusing. Acta Physica Sinica, 2019, 68(14): 146201.doi:10.7498/aps.68.20190564 |
[10] |
Zhang Wen-Jun, Gao Long, Wei Hong, Xu Hong-Xing.Modulation of propagating surface plasmons. Acta Physica Sinica, 2019, 68(14): 147302.doi:10.7498/aps.68.20190802 |
[11] |
Wu Li-Xiang, Li Xin, Yang Yuan-Jie.Generation of surface plasmon vortices based on double-layer Archimedes spirals. Acta Physica Sinica, 2019, 68(23): 234201.doi:10.7498/aps.68.20190747 |
[12] |
Wang Dong, Xu Jun, Chen Yi-Hang.Broadband absorption caused by coupling of epsilon-near-zero mode with plasmon mode. Acta Physica Sinica, 2018, 67(20): 207301.doi:10.7498/aps.67.20181106 |
[13] |
Wang Wen-Hui, Zhang Nao.Energy loss of surface plasmon polaritons on Ag nanowire waveguide. Acta Physica Sinica, 2018, 67(24): 247302.doi:10.7498/aps.67.20182085 |
[14] |
Deng Hong-Mei, Huang Lei, Li Jing, Lu Ye, Li Chuan-Qi.Tunable unidirectional surface plasmon polariton coupler utilizing graphene-based asymmetric nanoantenna pairs. Acta Physica Sinica, 2017, 66(14): 145201.doi:10.7498/aps.66.145201 |
[15] |
Li Ming, Chen Yang, Guo Guang-Can, Ren Xi-Feng.Recent progress of the application of surface plasmon polariton in quantum information processing. Acta Physica Sinica, 2017, 66(14): 144202.doi:10.7498/aps.66.144202 |
[16] |
Jiang Mei-Ling, Zheng Li-Heng, Chi Cheng, Zhu Xing, Fang Zhe-Yu.Research progress of plasmonic cathodoluminesecence characterization. Acta Physica Sinica, 2017, 66(14): 144201.doi:10.7498/aps.66.144201 |
[17] |
Hu Chang-Bao, Xu Ji, Ding Jian-Ping.Subwavelength light focusing using quadric cylinder surface plasmonic lens with gold film slits filled with dielectric. Acta Physica Sinica, 2016, 65(13): 137301.doi:10.7498/aps.65.137301 |
[18] |
Sheng Shi-Wei, Li Kang, Kong Fan-Min, Yue Qing-Yang, Zhuang Hua-Wei, Zhao Jia.Tooth-shaped plasmonic filter based on graphene nanoribbon. Acta Physica Sinica, 2015, 64(10): 108402.doi:10.7498/aps.64.108402 |
[19] |
Li Jia-Ming, Tang Peng, Wang Jia-Jian, Huang Tao, Lin Feng, Fang Zhe-Yu, Zhu Xing.Focusing surface plasmon polaritons in archimedes' spiral nanostructure. Acta Physica Sinica, 2015, 64(19): 194201.doi:10.7498/aps.64.194201 |
[20] |
Han Qing-Yao, Tang Jun-Chao, Zhang Chao, Wang Chuan, Ma Hai-Qiang, Yu Li, Jiao Rong-Zhen.The effects of local density of states on surface plasmon polaritons. Acta Physica Sinica, 2012, 61(13): 135202.doi:10.7498/aps.61.135202 |