Deep-ultraviolet laser microscope reveals diamond’s nanoscale transport behaviors

Deep-ultraviolet laser microscope reveals diamond’s nanoscale transport behaviors

Ultrawide-bandgap semiconductors—such as diamond—are promising for next-generation electronics due to a larger energy gap between the valence and conduction bands, allowing them to handle higher voltages, operate at higher frequencies, and provide greater efficiency compared to traditional materials like silicon. Ultrawide-bandgap semiconductors—such as diamond—are promising for next-generation electronics due to a larger energy gap between the valence and conduction bands, allowing them to handle higher voltages, operate at higher frequencies, and provide greater efficiency compared to traditional materials like silicon. Nanophysics Nanomaterials Phys.org – latest science and technology news stories

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