Showing 721 - 740 results of 759 for search '"optoelectronic"', query time: 0.05s Refine Results
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    Rhodium‐Alloyed Beta Gallium Oxide Materials: New Type Ternary Ultra‐Wide Bandgap Semiconductors by Xian‐Hu Zha, Yu‐Xi Wan, Shuang Li, Dao Hua Zhang

    Published 2025-01-01
    “…Combined with the enhanced valence energy, reduced hole mass, and ultra‐wide bandgap, the β‐(RhxGa1‐x)2O3 can be candidate semiconductors for a new generation of power electronics, ultraviolet optoelectronics, and complementary metal‐oxide‐semiconductor (CMOS) technologies.…”
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  6. 726

    Models of waveguides combining gradient and nonlinear optical layers by S. E. Savotchenko

    Published 2023-08-01
    “…Theoretical studies of the waveguide properties of interfaces between nonlinear optical and graded-index media are important for application in optoelectronics. Waveguides combining layers with different optical properties seem to be the most promising, since they can be matched to optimal characteristics using a wide range of control parameters. …”
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    Preferential Crystallographic Orientation and Optical Properties in (Ag,Zn)-Based Oxide Nanoparticle Thin Film Depending on Spark Voltage by Ebru Güngör, Tayyar Güngör

    Published 2024-01-01
    “…With the spark-voltage effect, the change in preferential crystallographic orientations of ZnO and Ag:ZnO samples and the change in optical band gap depending on the NP shape of the AgO sample can offer significant advantages in terms of optoelectronics.…”
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    Quantum size effects and tailoring the electron energy levels in semiconductors: comparison study on Al x Ga 1-x As and Ga x In 1-x As quantum wires by M. K. Abu-Assy, Fatin Fadhel Mahmood, Z. A. El-Wahab

    Published 2025-02-01
    “…Abstract The engineering of the architecture of the quantum wires has shown a real challenge in the scientific community owing to their fascinating and auspicious application potential in the field of optoelectronics. The modulation of the morphology and structure of the quantum wires may give rise to the modulation of the energy levels and band offset positions to enhance the charge carriers transfer through any electronic device and improve the overall performance for the future application in the field of spintronics and photonics. …”
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