Title of article :
Quantum spin hall effect on pseudo-graphene zigzag nanoribbons
Author/Authors :
Ghorbani ، Javad Department of Physics - Islamic Azad University, Qom Branch , Ghaffarian ، Mehdi Department of Physics - University of Qom , Tashakori ، Hasan Department of Physics - Islamic Azad University, Qom Branch , Baradaran ، Alireza Department of Physics - University of Qom
From page :
93
To page :
101
Abstract :
This research explores how two-dimensional honeycomb materials can be used in advanced electronics, focusing on zigzag honeycomb nanoribbons. These nanoribbons can create zero-energy band gaps, enabling helical spin current edge states. The study investigates the quantum spin Hall state, showcasing the adaptability of the Kane-Mele model in various honeycomb lattices. In addition to the theoretical discussions, this study presents a detailed Hamiltonian, performs band structure computations, and introduces a novel spin-filtering technique for zigzag nanoribbons. This method enhances our understanding of edge-localized quantum states and can revolutionize spintronics. By revealing the quantum states in honeycomb nanoribbons, this study contributes to the advancement of electronics and offers a promising path for highly efficient spin-based technologies.
Keywords :
Haldane Model , Kane , Mele Model , Pseudo , Graphene , Quantum Spin Hall Effect , Topological Insulator , Two , Dimensional Honeycomb Materials , Zigzag Nanoribbon
Journal title :
International Journal of Nano Dimension (IJND)
Journal title :
International Journal of Nano Dimension (IJND)
Record number :
2758256
Link To Document :
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