Mostrando 641 - 660 Resultados de 32,622 Para Buscar '"Hall ', tiempo de consulta: 0.42s Limitar resultados
  1. 641
  2. 642
    por Yokoyama, Takehito
    Publicado 2021
    “…Transverse current due to Berry curvature in phase space is formulated based on the Boltzmann equations with the semiclassical equations of motion for an electron wave packet. It is shown that the Hall effect due to the phase space Berry curvature is absent because the contributions from “anomalous velocity” and “effective Lorentz force” are completely cancelled out.…”
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  3. 643
    por Rabie, Tinda
    Publicado 2021
    “…OBJECTIVE: Nursing Professionalism was measured by Hall’s Professionalism Scale, consisting of 50 items. …”
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  4. 644
    “…The quantum Hall effect is the seminal example of topological protection, as charge carriers are transmitted through one-dimensional edge channels where backscattering is prohibited. …”
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  5. 645
    “…Both the Chern [Formula: see text] and quantum spin Hall [Formula: see text] insulators were first predicted in graphene, which led to a veritable explosion of research in topological materials. …”
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  6. 646
    “…Domain walls in fractional quantum Hall ferromagnets are gapless helical one-dimensional channels formed at the boundaries of topologically distinct quantum Hall (QH) liquids. …”
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  7. 647
  8. 648
    “…The presence of hopping carriers and grain boundaries can sometimes lead to anomalous carrier types and density overestimation in Hall-effect measurements. Previous Hall-effect studies on carbon nanotube films reported unreasonably large carrier densities without independent assessments of the carrier types and densities. …”
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  9. 649
  10. 650
  11. 651
  12. 652
    “…It is shown that these valley Hall elastic insulators can guide elastic waves along sharp interfaces and are immune to backscattering from defects or disorder. …”
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  13. 653
  14. 654
  15. 655
    “…Quantum anomalous Hall effect (QAHE) and magnetic skyrmion (SK) represent two typical topological states in momentum (K) and real (R) spaces, respectively. …”
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  16. 656
  17. 657
  18. 658
    “…Here, we focus on the interplay between topological domain wall states and quantum Hall edge transport within the eight-fold degenerate zeroth Landau level of high-quality suspended bilayer graphene. …”
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  19. 659
    “…The inelastic scattering length (L(s)) is a length scale of fundamental importance in condensed matters due to the relationship between inelastic scattering and quantum dephasing. In quantum anomalous Hall (QAH) materials, the mesoscopic length scale L(s) plays an instrumental role in determining transport properties. …”
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  20. 660
    “…It has become common knowledge that phonons can generate thermal Hall effect in a wide variety of materials, although the underlying mechanism is still controversial. …”
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