Abstract
MZI switches are well-known devices for high speed communication applications. A lot of researchers have designed MZI switches by using lithium niobate and potassium niobate material. But the major problem of using these type of material includes high insertion losses and required high switching voltage. So, in this research paper we have designed a 2×2 electro-optic switch using optical waveguide designed with Titanium (Ti) diffused in Strontium barium niobate (SBNO3) material which can operate at wavelength of 1.3 um. Results show that the proposed structure gives better output in terms of extinction ratio (=29.9 db) as well as for insertion losses (≤0.018). Further, we have designed various optical gates i. e. XNOR, XOR and AND optical gates and their performance is also evaluated by varying electrode voltages. It is inferred from the results that the proposed model gives better results even in terms of output power which can be used for commercial purpose.
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Articles in the same Issue
- Frontmatter
- Amplifiers
- Automatic Gain-Controlled HOA with Residual Pumping
- Performance Evaluation of DPSK System with Different Combination of Hybrid Optical Amplifiers by Using Equal and Unequal Channel Spacing
- Devices
- Investigation of Photonic Integrated Circuits with Low-Loss Bragg Gratings
- Design and Performance Analysis of MZI Based 2×2 Reversible XNOR Logic Gate
- Design and Numerical Analysis of an All-optical 4-channel Power Splitter in E, S, C, L, and U Bands via Nano-line Defects in Photonic Crystal
- Tunable High Performance 16-Channel Demultiplexer on 2D Photonic Crystal Ring Resonator Operating at Telecom Wavelengths
- Fibers
- Experimental Investigation of Intensity Modulator/Direct Detection (IM/DD) Optical OFDM System with Fiber Bragg Grating (FBG)
- Integrated Optics
- A Novel Proposal for All-Optical OR/AND Gate Using Nonlinear Photonic Crystal Ring Resonators
- Design and Implementation of Electro-Optic 2×2 Switch and Optical Gates using MZI
- Networks
- A Survey of Dynamic Bandwidth Assignment Schemes for TDM-Based Passive Optical Network
- Systems
- PIIN Cancellation Using a Novel Receiving Architecture for Spectral/Spatial SAC-OCDMA System
- Design of Multiservice Code (MS) in Spectral/Temporal/Spatial Domain for OCDMA System
- Enhanced Performances of SAC-OCDMA System by Using Polarization Encoding
- PAPR Reduction in MIMO-OFDM System Using SLM Without SI
- Companding Schemes for Reducing PAPR in OFDM System: A Review
Articles in the same Issue
- Frontmatter
- Amplifiers
- Automatic Gain-Controlled HOA with Residual Pumping
- Performance Evaluation of DPSK System with Different Combination of Hybrid Optical Amplifiers by Using Equal and Unequal Channel Spacing
- Devices
- Investigation of Photonic Integrated Circuits with Low-Loss Bragg Gratings
- Design and Performance Analysis of MZI Based 2×2 Reversible XNOR Logic Gate
- Design and Numerical Analysis of an All-optical 4-channel Power Splitter in E, S, C, L, and U Bands via Nano-line Defects in Photonic Crystal
- Tunable High Performance 16-Channel Demultiplexer on 2D Photonic Crystal Ring Resonator Operating at Telecom Wavelengths
- Fibers
- Experimental Investigation of Intensity Modulator/Direct Detection (IM/DD) Optical OFDM System with Fiber Bragg Grating (FBG)
- Integrated Optics
- A Novel Proposal for All-Optical OR/AND Gate Using Nonlinear Photonic Crystal Ring Resonators
- Design and Implementation of Electro-Optic 2×2 Switch and Optical Gates using MZI
- Networks
- A Survey of Dynamic Bandwidth Assignment Schemes for TDM-Based Passive Optical Network
- Systems
- PIIN Cancellation Using a Novel Receiving Architecture for Spectral/Spatial SAC-OCDMA System
- Design of Multiservice Code (MS) in Spectral/Temporal/Spatial Domain for OCDMA System
- Enhanced Performances of SAC-OCDMA System by Using Polarization Encoding
- PAPR Reduction in MIMO-OFDM System Using SLM Without SI
- Companding Schemes for Reducing PAPR in OFDM System: A Review