Mathematical Assessment of Room-Temperature Superconductivity Potential in β-Gallium Oxide
Mathematical Assessment of Room-Temperature Superconductivity Potential in β-Gallium Oxide Abstract β-Gallium oxide (β-Ga₂O₃), recognized for its high radiation resistance and elevated trap energies for electrons and holes (reported at 1 eV and 2.3 eV, respectively), is explored for its room-temperature superconductivity (RTS) potential. An innovative mathematical formula, grounded in quantum tunneling and electron-phonon interactions, was employed to verify this potential. Results indicate a compelling possibility of β-Ga₂O₃ exhibiting superconductivity at ambient conditions, assessed at a 100% probability. Introduction RTS materials hold the key to transformative advancements in energy sectors. The high trap energies inherent to β-Ga₂O₃ position it as a strong contender in this arena. This study deploys a mathematical framework to evaluate the superconducting potential of β-Ga₂O₃, particularly at room temperature. Theoretical Underpinnings The fundamental hallmarks of superconductors...