CORDIS Project
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This project explores the potential of synthetic diamonds for advanced electronics and quantum applications by investigating spin-polarized transport in two-dimensional hole gas formed at diamond surfaces. It aims to enhance the performance of microelectronic devices through improved spin-orbit coupling and reduced car…
With the advancement of techniques to grow high-purity, single-crystal synthetic diamonds and due to extreme physio-chemical characteristics and ultra-wide bandgap (5.47 eV) nature, diamond has been considered the next-generation material for high power, high temperature and high-frequency electronics, quantum computing, sensing, and communication applications.
Observing the temperature-independent conductivity and the possibility of generating excessive hole carrier concentrations and spin-orbi…
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