In this paper, a plasmonic refractive index sensor is designed based on a Metal-Insulator-Metal waveguide coupled to a bragg reflector side-coupled to a rectangular cavity. A 2D-FDTD method is used to simulate the results. Results show that a maximum of 1320 nm/RIU for sensitivity and 45.5 RIU-1 for figure-of-merit could be obtained which shows the applicability of the sensor for accurate and compact sensing applications.
Vahedi, M., & Moradkhani, M. (2020). Design and Simulation of a Sensor based on Plasmonic Bragg reflector. (e6315). Journal Of Moden Research Physics, 5(1), e6315 https://doi.org/10.22034/jmrph.2020.6315
MLA
Vahedi, M., & Moradkhani, M. "Design and Simulation of a Sensor based on Plasmonic Bragg reflector" .e6315 , Journal Of Moden Research Physics, 5, 1, 2020, e6315. doi: 10.22034/jmrph.2020.6315
HARVARD
Vahedi M., Moradkhani M. (2020). 'Design and Simulation of a Sensor based on Plasmonic Bragg reflector', Journal Of Moden Research Physics, 5(1), e6315. doi: 10.22034/jmrph.2020.6315
CHICAGO
M. Vahedi & M. Moradkhani, "Design and Simulation of a Sensor based on Plasmonic Bragg reflector," Journal Of Moden Research Physics, 5 1 (2020): e6315, doi: 10.22034/jmrph.2020.6315
VANCOUVER
Vahedi M., Moradkhani M. Design and Simulation of a Sensor based on Plasmonic Bragg reflector. JMRPH. 2020;5(1):e6315 (In Persian). doi: 10.22034/jmrph.2020.6315