University of British Columbia (UBC) scientists have demonstrated a reversible way to switch the topological state of a quantum material using mechanisms compatible with modern electronic devices.
Researchers have demonstrated a new material for single-molecule electronic switches, which can effectively vary current at the nanoscale in response to external stimuli. The material for this ...
The ability to switch magnetism, or, in other words, to change the orientation of a material's magnetic moments, using only electricity, could open new opportunities for the efficient storage of data ...
A collaborative European research team led by physicists from Slovak Academy of Sciences has theorized a new approach to control spin currents in graphene by coupling it to a ferroelectric In 2 Se 3 ...
Benefits of soft-switching for WBG inverters. Types of soft-switching techniques. How MCU advances have pushed soft-switching back into automotive and industrial design. Wide-bandgap (WBG) ...
Gallium nitride (GaN) is breaking out in the world of power electronics. GaN stands out for its superior physical properties, including high electron mobility, wide bandgap, and high thermal ...
University of British Columbia scientists have demonstrated a reversible way to switch the topological state of a quantum material. The figure images show the transition from gapless nodal loop (dark ...
Characteristics of the graphene/In 2 Se 3 heterostructure transport device that shows the spin chirality switch. Over the past two decades, spintronics has emerged as one of the most promising ...
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