Machine-Learning-Enhanced Polarization Splitter in Silicon-Integrated Dual-Core Photonic Crystal Fiber
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-56144-3_30
Reference18 articles.
1. Rajeswari, D., Raja, A.S., Selvendran, S.: Design and analysis of polarization splitter based on dual-core photonic crystal fiber. Optik 144 (2017)
2. Selvendran, S., Divya, J., Sivananthan Raja, A., Sivasubramanian, A., Itapu, S.: A reconfigurable surface-Plasmon-based filter/sensor using D-shaped photonic crystal fiber. Micromachines 13(6), 917 (2022)
3. Bai, Y., Hao, R., Yuan, B., Cao, B.: An ultrashort length and high extinction ratio polarization beam splitter based on dual-core PCF. J. Opt. 50, 257–263 (2021)
4. Ding, Y., Liu, C., Yang, L., Lv, J., Fu, G., Li, X., Liu, Q., Wang, F., Sun, T., Chu, P.K.: Efficient photonic crystal fiber polarization splitters composed of gallium arsenide and nematic liquid crystals. Mod. Phys. Lett. B 35(04), 2150077 (2021)
5. Zhao, T., Lou, S., Wang, X., Zhou, M., Lian, Z.: Ultrabroadband polarization splitter based on three-core photonic crystal fiber with a modulation core. Appl. Opt. 55(23), 6428–6434 (2016)
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