Abstract
On the basis of single metal-insulator-metal (MIM) ring resonator (RR) structure, which acts as a band-stopped filter, a dual RR (DRR) system is proposed to obtain the plasmon-induced transparency (PIT) effect. By rotating the second RR an angle, double PIT windows are achieved due to the dual interference effects, which are attributed to different excitation pathways from the first RR to the second RR. In addition, triple PIT peaks are also achieved by adding an extra inclined RR to the DRR system. Phase shifts, which will occur at each transparency window, are also achieved and analyzed. These compact MIM waveguide structures may be used in the highly integrated optical circuits for biochemical sensors optical signal processing, and optical data storage.
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Wen, K., Hu, Y., Chen, L., Zhou, J., He, M., Lei, L., & Meng, Z. (2015). Multiple Plasmon-Induced Transparency Responses in a Subwavelength Inclined Ring Resonators System. IEEE Photonics Journal, 7(6). https://doi.org/10.1109/JPHOT.2015.2504966
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