- G. Song*, X. Feng, G.-Y. Duan, Y.-Y. Chen, C. Wang, P.-F. Zhang and L. Yu. Amplifying the Interaction Between Two Identical Metallic Nanoparticles with a Large Interface Distance Based on the Strong Coupling-Like Phenomenon Involving Molecular J-aggregates Plasmonics, 13: 1403–1407 (2018).
- G. Song*, L. Yu, G. Duan, L. Wang. Strong Coupling in the Structure of Single Metallic Nanoparticle Partially Buried in Molecular J-Aggregates. Plasmonics, 13: 743–747 (2018).
- G. Song, W. Zhang. Power-Law/Exponential Transport of Electromagnetic Field in OneDimensional Metallic Nanoparticle Arrays. Plasmonics. (2018). Doi.org/10.1007/s11468-018-0763-x
- Gang Song*, Li Yu, Gao-Yan Duan and Lu-Lu Wang. Tunable band-stop filters based on strong coupling-like phenomenon in metal-insulator-metal cavities involving molecular Jaggregates. Journal of Physics D: Applied Physics. 50(20): 205104 (2017).
- Pengfei Zhan, Palash K. Dutta, Pengfei Wang, Gang Song, Mingjie Dai, Shu-Xia Zhao, ZhenGang Wang, Peng Yin, Wei Zhang, Baoquan Ding, and Yonggang Ke. Reconfigurable ThreeDimensional Gold Nanorod Plasmonic Nanostructures Organized on DNA Origami Tripod. ACS Nano, 2017, 11(2): 1172–1179.
- G. Song, W. Zhang. Electromagnetic Field Propagation in the One-Dimensional Silver Nanoparticle Dimer Chains: Hotspots and Energy Transport. Plasmonics. 12(1): 179-184 (2017).
- Gang Song*, Jin Dai, Luna Cui, Chao Wu, Jinghua Xiao. Multipath Switch Based on the Optical Bistability with Surface Plasmon. Plasmonics, 8: 1529–1534 (2013).
- Gang Song*, Li Yu, Chao Wu, Gaoyan Duan, Lulu Wang, Jinghua Xiao. Polarization Splitter with Optical Bistability in Metal Gap Waveguide Nanocavities. Plasmonics, 8:943–947(2013).
- Song Gang; Wu Chao; Zhou YanPing; Yu Li; Xiao JingHua. Optical bistability based on surface plasmon coupled between a noble metal film and a metal grating involving Kerr materials. SCIENCE CHINA-PHYSICS MECHANICS & ASTRONOMY. 56(11) 2098, (2103)
- Song Gang; Zhang Kai; Chen YuanYuan; Liu HuiLi; Wu Chao; Yu Li; Xiao JingHua. Optical bistability based on surface plasmon coupled between two noble metal films involving Kerr materials. SCIENCE CHINA-PHYSICS MECHANICS & ASTRONOMY. 56(4), 680-684 (2013)