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- W4386427059 abstract "The use of a Travelling Wave Semiconductor Optical Amplifier to create an all-optical half adder that satisfies the half adder’s truth table. Without the need to convert to electrical impulses, SOA serves as an amplifier. Designing the proposed model using all-optical XOR gates and AND gates with SOA cross-gain modulation at a 10 Gbps data rate. The development of digital equipment is the primary goal of optical computing. Optical computing is the greatest option for high-speed data processing. Bit Error Rate (BER) analysis for a half adder shows that the BER is as low as 1.885, the Q-factor has been raised to 5.4, and 19.806 dBm was utilized as the power value. The half adder is used in digital circuits and it is used in optical computers it does not use current but under processed. It is used as one of the blocks in optical computers. Next-generation optical networks and optical computing both use all-optical digital devices as essential parts of enhanced signal processing. Photonic integrated circuits are needed in the majority of digital systems to perform high-speed, energy-efficient functionality." @default.
- W4386427059 created "2023-09-05" @default.
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- W4386427059 date "2023-07-14" @default.
- W4386427059 modified "2023-10-01" @default.
- W4386427059 title "Design of Half Adder Using Travelling Wave Semiconductor Optical Amplifier" @default.
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- W4386427059 doi "https://doi.org/10.1109/wconf58270.2023.10235226" @default.
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