The transformation of digital information devices2D structures from large installations to portable systems has been enabled by advanced processing technologies that allow ultrahigh integration of devices with atomic-scale dimensions that increasingly possess properties that are dominated by quantum physics. The quantum particles - Leptons are good candidates to be quantum information carriers (qubits). After all, they also have an associated anti-particle, which has the same mass but opposite charge. Along with the quantum properties and potential of 2D materials2D materials as solid-state platforms for quantum-dot qubits, single-photon emitters, superconducting qubits, and topological quantum computing elements it is necessary to select the best method of their preparation. The paper aims to elaborate on the concept of usage of leptons-based spintronic and spinqubitSpinqubit systems obtained by Laser Plasma technology of 2D materials2D materials preparation. We are looking for further development of LP processes aimed at preparing the next (higher) level of spintronic structures based on diluted semiconductors. Our work shows that the LP method and technology are very useful for the preparation of new highly effective multiqubit elements.

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Spintronics and Spinquant 2D Structures Prepared Using Laser Plasma Method

  • Paata J. Kervalishvili

摘要

The transformation of digital information devices2D structures from large installations to portable systems has been enabled by advanced processing technologies that allow ultrahigh integration of devices with atomic-scale dimensions that increasingly possess properties that are dominated by quantum physics. The quantum particles - Leptons are good candidates to be quantum information carriers (qubits). After all, they also have an associated anti-particle, which has the same mass but opposite charge. Along with the quantum properties and potential of 2D materials2D materials as solid-state platforms for quantum-dot qubits, single-photon emitters, superconducting qubits, and topological quantum computing elements it is necessary to select the best method of their preparation. The paper aims to elaborate on the concept of usage of leptons-based spintronic and spinqubitSpinqubit systems obtained by Laser Plasma technology of 2D materials2D materials preparation. We are looking for further development of LP processes aimed at preparing the next (higher) level of spintronic structures based on diluted semiconductors. Our work shows that the LP method and technology are very useful for the preparation of new highly effective multiqubit elements.