Dong, J.; Zang, Q.; Tang, L.; Wei, B.; Bai, X.; Zhang, H.; Liu, C.; Shi, H.; Shi, H.; Liu, Y.;
et al. High-Efficiency Mid-Infrared Transmission Modulator Based on Graphene Plasmon Resonance and Photonic Crystal Defect States. Photonics 2025, 12, 800.
https://doi.org/10.3390/photonics12080800
AMA Style
Dong J, Zang Q, Tang L, Wei B, Bai X, Zhang H, Liu C, Shi H, Shi H, Liu Y,
et al. High-Efficiency Mid-Infrared Transmission Modulator Based on Graphene Plasmon Resonance and Photonic Crystal Defect States. Photonics. 2025; 12(8):800.
https://doi.org/10.3390/photonics12080800
Chicago/Turabian Style
Dong, Jiduo, Qing Zang, Linlong Tang, Binbin Wei, Xiangxing Bai, Hao Zhang, Chunheng Liu, Haofei Shi, Hongyan Shi, Yang Liu,
and et al. 2025. "High-Efficiency Mid-Infrared Transmission Modulator Based on Graphene Plasmon Resonance and Photonic Crystal Defect States" Photonics 12, no. 8: 800.
https://doi.org/10.3390/photonics12080800
APA Style
Dong, J., Zang, Q., Tang, L., Wei, B., Bai, X., Zhang, H., Liu, C., Shi, H., Shi, H., Liu, Y., & Lu, Y.
(2025). High-Efficiency Mid-Infrared Transmission Modulator Based on Graphene Plasmon Resonance and Photonic Crystal Defect States. Photonics, 12(8), 800.
https://doi.org/10.3390/photonics12080800