研究目的
To propose and investigate a novel 2 × 1 multiplexer based on an adder structure and a controllable nano-plasmonic switch using CMT and FDTD methods.
研究成果
The proposed 2 × 1 multiplexer, based on an adder structure and a controllable nano-plasmonic switch, demonstrates high extinction ratio (about 22.04 dB), ultra-fast response time (about 560 fs), and requires very low-level pump light intensity (about 150 KW/cm2). It is potentially useful in all-optical signal processing, nano-plasmonic circuits, and communication.
研究不足
The delay time of Kerr nonlinear material is not considered in the numerical simulations, which means the measured response time is the shortest switching time of the device derived from the feedback of the proposed structure.
1:Experimental Design and Method Selection:
The study employs coupled-mode theory (CMT) and finite-difference time-domain (FDTD) method to investigate the operation of the proposed device.
2:Sample Selection and Data Sources:
The device is composed of an adder module and an all-optical controllable switching module.
3:List of Experimental Equipment and Materials:
The MIM waveguides are filled with air, and the racetrack-shaped ring resonator is filled with Au/SiO
4:Experimental Procedures and Operational Workflow:
The operation of the proposed device is simulated using FDTD method with grid sizes of Δx = Δy = 2 nm, and the time step is Δt = Δx∕(2c).
5:Data Analysis Methods:
The transmission spectra and time responses are analyzed to evaluate the device's performance.
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