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- W2061270879 abstract "We demonstrate that it is possible to tune the Rashba energy, introduced by a strong spin-orbit splitting, and the Fermi energy in a two-dimensional electron gas by a controlled change of stoichiometry in an artificial surface alloy. In the ${mathrm{Bi}}_{x}{mathrm{Pb}}_{1ensuremath{-}x}∕mathrm{Ag}(111)$ surface alloy, the spin-orbit interaction maintains a dramatic influence on the band dispersion for arbitrary Bi concentration $x$, as is shown by angle-resolved photoelectron spectroscopy. The Rashba energy ${E}_{R}$ and the Fermi energy ${E}_{F}$ can be tuned to achieve values larger than one for the ratio ${E}_{R}∕{E}_{F}$, which opens up the possibility for observing phenomena, such as corrections to the Fermi liquid or a superconducting state. Relativistic first-principles calculations explain the experimental findings." @default.
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- W2061270879 date "2008-02-15" @default.
- W2061270879 modified "2023-10-18" @default.
- W2061270879 title "Spin-orbit split two-dimensional electron gas with tunable Rashba and Fermi energy" @default.
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- W2061270879 doi "https://doi.org/10.1103/physrevb.77.081407" @default.
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