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A compact realization of Feynman Reversible and NOR logic gate using Plasmonic waveguide based MZI for all-optical signal processing

Publication Type : Journal Article

Publisher : Elsevier BV

Source : Optics Communications

Url : https://doi.org/10.1016/j.optcom.2022.128707

Keywords : Reversible logic gates, Optical computing, Plasmonics, Mach–Zehnder interferometer

Campus : Faridabad

School : School of Artificial Intelligence

Year : 2022

Abstract : The reversible logic function becomes a potential solution in the regime of optical switching and computing. The one-to-one mapping between inputs and outputs in a reversible gate is a key advantage, that prevents information loss. The reversible logic gates have shown potential applications in low-power complementary metal-oxide semiconductors and in quantum computing. Therefore, to utilize these benefits of reversible functions, we have proposed an all-optical compact circuit to realize the functioning of Feynman reversible and NOR logic gates. The proposed all-optical circuit is modeled within the footprints of 87 μ m by using a plasmonic metal–insulator–metal (MIM) waveguide-based Mach–Zehnder interferometer (MZI). The numerical investigation of the MZI is done by evaluating the power imbalance and extinction ratio. The results show that the optical signal propagating in a single MZI with an extinction ratio of 15.1 dB for the power difference of 0.001 W/ μ m ( ∼ 0.1 dB) and 0.0012 W/ μ m ( ∼ 0.79 dB) for logic ‘0’ and logic ‘1’, respectively. The logic ‘0’ and ‘1’ is represented by low (0.028 W/ μ m) and high (0.038 W/ μ m) power signals. At logic ‘0’ the optical signal propagates in linear arms of MZI with ‘ π ’ phase variation, which causes constructive interference (CI) and thrives the signal at the cross-port. For logic ‘1’ the optical signal experiences ‘0’ phase variation in linear arms of MZI, and due to destructive interference reaches its through-port. The investigated results of the proposed circuit are attained by using the finite difference time domain (FDTD) method.

Cite this Research Publication : Lokendra Singh, Reshu Saxena, Guo Zho, Chinmoy Saha, Prakash Pareek, A compact realization of Feynman Reversible and NOR logic gate using Plasmonic waveguide based MZI for all-optical signal processing, Optics Communications, Elsevier BV, 2022, https://doi.org/10.1016/j.optcom.2022.128707

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