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Patterned spintronic emitter enables room-temperature THz polarization control for wireless and biomedical applicationsRotating the emitter adjusts the polarization, while built-in electric fields—formed by charge accumulation at the pattern's edges—control the amplitude and phase differences.
Intergrowth ferroelectric semiconductors, owing to their intrinsic strong spontaneous polarization electric fields, can continuously and effectively facilitate the separation and migration of ...
A revolutionary new spintronic device developed in China enables powerful, precise control of terahertz (THz) wave ...
A collaborative study published in Nature reveals an innovative strategy to enhance energy storage in antiferroelectric ...
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