Please use this identifier to cite or link to this item: http://dx.doi.org/10.25673/120515
Title: Simulation of the Creation of a Single Quantum Gate to Change the Quantum State of a Photon Using Quarter-Wave Plates
Author(s): Abduljaleel, Ali
Saleh, Mezher Baker
Granting Institution: Hochschule Anhalt
Issue Date: 2025-06
Extent: 1 Online-Ressource (7 Seiten)
Language: English
Abstract: The design and simulation of single Pauli gates and Hadamard gates were performed using MATLAB. The Pauli-X gate was constructed using two quarter-wave plates QWP and was evaluated on the quantum states |0⟩ and |1⟩. The Pauli-Y gate design used six quarter-wave plates QWP. When the gate function was tested on the quantum states |0⟩ and |1⟩, it was observed that the state |0⟩ transforms to i|1⟩, while the state |1⟩ transforms to -i|0⟩. The Pauli-Z gate was constructed using two quarter-wave plates in two ways and was tested on the quantum states |0⟩ and |1⟩; it was observed that the quantum state |0⟩ remained unchanged, while the quantum state |1⟩ transforms to |−1⟩ in both ways. Finally, improving the quantum interference by using two quarter-wave plates leads to obtaining a Hadamard gate, which transforms the input state or into a superposition state between and. Finally, we emphasize the importance of QWP in developing more efficient and effective quantum systems.
URI: https://opendata.uni-halle.de//handle/1981185920/122470
http://dx.doi.org/10.25673/120515
Open Access: Open access publication
License: (CC BY-SA 4.0) Creative Commons Attribution ShareAlike 4.0(CC BY-SA 4.0) Creative Commons Attribution ShareAlike 4.0
Appears in Collections:International Conference on Applied Innovations in IT (ICAIIT)

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