IEEE Photonics Technology Letters · 2018 · 23 citations · 15 references
Symmetric Interference ModesPhotonicsElectrical EngineeringOptical MaterialsEngineeringSymmetric 1Interference ModesApplied PhysicsSilicon Mmi SwitchIntegrated CircuitsOptical SwitchingPhotonic Integrated CircuitSilicon On InsulatorMicroelectronicsOptoelectronicsThermo-optic Control
We demonstrate a compact and high-performance 1 x 2 silicon MMI switch by thermo-optic control of symmetric interference modes using local and direct heating of the mode-peak regions. The direct heater is formed with n-i-n-i-n resistors whose i-regions are placed at the peak regions of the first two-folded image. Three electrodes are separately formed on each n-doped region for alternative heating of the two i-regions. Using a symmetric 1 × 2 MMI designed as a 50:50 splitter under no bias, path switching is attained by inducing a phase difference of ±π/2 between the two modes, applying a bias to either n-i-n heater. From this switching scheme, we achieve a low crosstalk of less than -30 dB with a compact active area of 3 μm × 40 μm. We also observe a fast switching response with a rising time of 1.04 μs and a falling time of 0.89 μs.
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Optical Interconnects for High-Performance Computing
Marc A. Taubenblatt · Journal of Lightwave Technology · 2011 · 366 citations