Showing 2,661 - 2,680 results of 2,730 for search '"spintronic"', query time: 0.14s Refine Results
  1. 2661

    Threefold Fermions, Weyl Points, and Superconductivity in the Mirror Symmetry Lacking Semiconductor TlCd<sub>2</sub>Te<sub>4</sub> by Angus Huang, Chin-Hsuan Chen, Horng-Tay Jeng

    Published 2022-02-01
    “…The topological phase transition and exotic quasiparticles in materials have attracted much attention because of their potential in spintronics and mimic of elementary particles. Especially, great research interest has been paid to search for the Weyl fermions in solid-state physics. …”
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  2. 2662
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    Magnetoelastic and Magnetoelectric Coupling in Two-Dimensional Nitride MXenes: A Density Functional Theory Study by Sukhito Teh, Horng-Tay Jeng

    Published 2023-09-01
    “…Two-dimensional multiferroic (2D) materials have garnered significant attention due to their potential in high-density, low-power multistate storage and spintronics applications. MXenes, a class of 2D transition metal carbides and nitrides, were first discovered in 2011, and have become the focus of research in various disciplines. …”
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  4. 2664
  5. 2665

    Brillouin Light Scattering from Magnetic Excitations by Akira Yoshihara

    Published 2023-01-01
    “…BLS investigations on the Fe/Cr multilayers, which exhibit ferromagnetic-antiferromagnetic arrangements of the adjacent Fe layer’s magnetizations depending on the Cr layer’s thickness, played an important role to open the new field known as “spintronics” through the discovery of the giant magnetoresistance (GMR) effect. …”
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  6. 2666

    Structural, Optical, Magnetic and Electrical Properties of Sputtered ZnO and ZnO:Fe Thin Films: The Role of Deposition Power by Ahmed Faramawy, Hamada Elsayed, Carlo Scian, Giovanni Mattei

    Published 2022-12-01
    “…The enhanced magnetic properties such as saturated magnetization and coercivity with optical properties reveal that Fe doped ZO thin films are suitable for magneto-optoelectronic (optoelectronic and spintronics) device applications.…”
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    Microstructural, Magnetic, and Optical Properties of Pr-Doped Perovskite Manganite La0.67Ca0.33MnO3 Nanoparticles Synthesized via Sol-Gel Process by Weiren Xia, Heng Wu, Piaojie Xue, Xinhua Zhu

    Published 2018-05-01
    “…Such magnetic properties and the semiconducting nature of the LPCMO nanoparticles will make them as suitable candidate for magnetic semiconductor spintronics.…”
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  12. 2672
  13. 2673

    Multiple-scattering approach for multi-spin chiral magnetic interactions: application to the one- and two-dimensional Rashba electron gas by Samir Lounis

    Published 2020-01-01
    “…Owing to their potential impact on the realisation of twisted spin-textures, their future implication in spintronics or quantum computing is very promising. …”
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  19. 2679

    Origin of microscopically coupled ferromagnetic Cu-ions in a distorted system of Cu-doped ZnO and their synchrotron-based electronic structures by A. Kumar, T. Ghosh, Z. Aabdin, J. Roy, V. K. Verma, A. Ghosh, S. K. Sahoo, R. Urkude, S. Bhunia, U. K. Goutam, K. Amemiya, A. Kandasami, V. R. Singh

    Published 2024-02-01
    “…Spintronics-based studies have produced significant attention in the last decade while claiming the observation of room temperature ferromagnetism (RTFM). …”
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  20. 2680

    Investigations of Electron-Electron and Interlayer Electron-Phonon Coupling in van der Waals hBN/WSe<sub>2</sub>/hBN Heterostructures by Photoluminescence Excitation Experiments by Joanna Jadczak, Joanna Kutrowska-Girzycka, Janina J. Schindler, Joerg Debus, Kenji Watanabe, Takashi Taniguchi, Ching-Hwa Ho, Leszek Bryja

    Published 2021-01-01
    “…In TMDs monolayers, strong and opposite spin splittings of the energy gaps at the K points allow for exciting carriers with various combinations of valley and spin indices using circularly polarized light, which can further be used in spintronics and valleytronics. The physical properties of van der Waals heterostructures composed of TMDs monolayers and hexagonal boron nitride (hBN) layers significantly depend on different kinds of interactions. …”
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