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  1. 981
    “…In this work, the intrinsic Hall mobility and photocarrier recombination coefficient are directly measured in these materials in steady-state transport studies. …”
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  2. 982
  3. 983
    “…While two-dimensional (2D) topological insulators (TI’s) initiated the field of topological materials, only very few materials were discovered to date and the direct access to their quantum spin Hall edge states has been challenging due to material issues. …”
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  4. 984
  5. 985
  6. 986
  7. 987
  8. 988
    por Liu, Liang, Qin, Hongwei, Hu, Jifan
    Publicado 2017
    “…The realization of a quantum spin Hall (QSH) insulator working at high temperature is of both scientific and technical interest since it supports spin-polarized and dssipationless edge states. …”
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  9. 989
    “…RESULTS: Sixty eight members of the public attended town hall sessions. A broad range of health experiences in the healthcare system were recounted. …”
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  10. 990
    “…Anomalous Hall effect, a manifestation of Hall effect occurring in systems without time-reversal symmetry, has been mostly observed in ferromagnetically ordered materials. …”
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  11. 991
    por Yan, Leyang, Zhang, Hui, Ye, Peiqing
    Publicado 2017
    “…In this paper, two linear Hall sensors are utilized to detect the mover position. …”
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  12. 992
    “…In a magnetic field, combination of quantum Hall physics and the characteristic transport across p–n junctions leads to a fractionally quantized conductance associated with the mixing of electron-like and hole-like modes and their subsequent partitioning. …”
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  13. 993
    “…Quantum Hall ferromagnetic transitions are typically achieved by increasing the Zeeman energy through in-situ sample rotation, while transitions in systems with pseudo-spin indices can be induced by gate control. …”
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  14. 994
  15. 995
    “…Moreover, this optical spin-orbit locking phenomenon, also called the photonic spin Hall effect, is robust against interface fluctuations, which may be very useful in the manipulation of electromagnetic signals.…”
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  16. 996
  17. 997
  18. 998
  19. 999
    “…Here we report the development of an elaborate growth technique of high-crystallinity and high-mobility Cd(3)As(2) films with controlled thicknesses and the observation of quantum Hall effect dependent on the film thickness. With decreasing the film thickness to 10 nm, the quantum Hall states exhibit variations such as a change in the spin degeneracy reflecting the Dirac dispersion with a large Fermi velocity. …”
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  20. 1000
    “…Moreover, the spin Hall angle and the spin diffusion length, which were 0.0648 and 1.31 nm, respectively, can be fitted by changing the Pt thickness in the longitudinal SMR function. …”
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