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Implementation of All-Optical Logic Gate Using SOA-MZI Structures

S. Kumar, A. Kumar, SK Raghuwanshi

Abstract


Semiconductor optical amplifiers (SOAs) are very attractive nonlinear elements for the realization of different logic functions, since they can exhibit a strong change of the refractive index together with high
gain. In this paper, a principle of operation, simulation step and experimental result of different all-optical logic gate (AND Gate, OR Gate, XOR Gate) are well presented. These gates are based on the nonlinearities on SOAs. The experimental results are exactly matched with standard results.

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References


G. P. Agrawal, Applications of Nonlinear Fibre Optics, Academic Press: 2001.

S. H. Kim, J. H. Kim, J. W. Choi, et al.All-Optical Half Adder Using Cross Gain Modulation in Semiconductor Optical Amplifiers, Opt. Exp. 2006; 14: 10693–10698p.

D. K. Gayen, A. Bhattachryya, T. Chattopadhyay, et al. Ultrafast All-Optical Half Adder Using Quantum-Dot Semiconductor Optical Amplifier Based Mach-Zehnder Interferometer, J. Lightwave. Technol. 2012; 30: 3387–3393p.

D. K. Gayen, T. Chattopadhyay, Designing of Optimized All-Optical Half Adder Circuit Using Single Quantum-Dot Semiconductor Optical Amplifier Assisted Mach-Zehnder Interferometer, J. Lightwave. Technol. 2013; 31: 2029–2035p.

Y. D. Wu, M. L. Huang, M. H. Chen, et al. All-Optical Switch Based on the Local Nonlinear Mach-Zehnder Interferometer,Opt. Exp. 2007; 15: 9883–9892p.

C. Taraphdar, T. Chattopadhyay, J. N. Roy, Mach-Zehnder Interferometer-Based All-Optical Reversible Logic Gate, Opt.Laser Technol. 2010; 42: 249–259p.

H. Sun, Q. Wang, H. Dong, et al.XOR Performance of a Quantum-Dot Semiconductor Optical Amplifier Based Mach-Zender Interferometer, Opt. Exp.

; 13(6): 1892–1899p.

T. Houbavlis, K. E. Zoiros, G. Kanellos, et al. Performance Analysis of Ultrafast AllOptical Boolean XOR Gate Using Semiconductor Optical Amplifier-Based Mach–Zehnder Interferometer, Opt. Comm. 2004; 232: 179–199p.

H. Han, M. Zhang, Peida Ye, et al. Parameter Design and Performance Analysis of a Ultrafast All-Optical XOR Gate Based on Quantum Dot Semiconductor Optical Amplifiers in Nonlinear Mach-Zehnder Interferometer, Opt. Comm. 2008; 281: 5140–5145p.

Q. Wang, G. Zhu, H. Chen, et al. Study of All-Optical XOR using Mach-Zehnder Interferometer and Differential Scheme,IEEE J. Quantum Elect. 2004; 40: 703–710p.

M. Zhang, Y. Zhao, L. Wang, et al. Design and Analysis of All-Optical XOR Gate using SOA-Based Mach–Zehnder Interferometer, Opt. Comm. 2003; 223:301–308p.

T. Houbavlis, K.E. Zoiros, G. Kanellos, et al. Performance Analysis of Ultrafast AllOptical Boolean XOR Gate using Semiconductor Optical Amplifier-Based Mach-Zehnder Interferometer, Opt.Comm. 2004; 232: 179–199p.

J.-Y. Kim, J.-M. Kang, T.-Y. Kim, et al. All-Optical Multiple Logic Gates with XOR, NOR, OR, and NAND Functions using Parallel SOA-MZI Structures: Theory and Experiment, J. Lightwave. Technol. 2006; 24: 3392–3399p.

E. Dimitriadou, K.E. Zoiros, On the Feasibility of Ultrafast All-Optical NAND Gate using Single Quantum-Dot Semiconductor Optical Amplifier-Based Mach–Zehnder Interferometer, Opt. Laser Technol. 2012; 44: 1971–1981p.

E. Dimitriadou, K.E. Zoiros, On the Design of Ultrafast All-Optical NOT Gate using Quantum-Dot Semiconductor Optical Amplifier-Based Mach-Zehnder Interferometer, Opt. Laser Technol. 2012; 44: 600–607p.

E. Dimitriadou, K.E. Zoiros, Proposal for Ultrafast All-Optical XNOR Gate using Single Quantum-Dot Semiconductor Optical Amplifier-Based Mach-Zehnder Interferometer, Opt. Laser Technol. 2013; 45: 79–88p.

Y. Ishizaka, Y. Kawaguchi, K. Saitoh, et al. Design of Ultra Compact All-Optical XOR and AND Logic Gates with Low Power Consumption, Opt.Commun. 2011; 284: 3528–3533p.

R. Kaler, R. S. Kaler, Implementation of Optical Encoder and Multiplexer using Mach-Zehnder Inferometer, Optik 2011; 122: 1399–1405p.

S. Kumar, S. K. Raghuwanshi, A. Kumar, Implementation of Optical Switches by using Mach-Zehnder Interferometer, Opt.

Eng. 2013; 52: 097106p


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