The holonomic manipulation of spin-orbital degenerate states, encoded in the Kramers doublet of narrow semiconducting channels with spin-orbit interaction, is shown to be intimately intertwined with the geometrical shape of the nanostructures. The presence of doubly degenerate states is not sufficient to guarantee a non-trivial mixing by only changing the Rashba spin-orbit coupling. We demonstrate that in nanoscale quantum rings the combination of arbitrary inhomogeneous curvature and adiabatic variation of the spin-orbit amplitude, e.g., through electric-field gating, can be generally employed to get non-trivial combinations of the degenerate states. Shape symmetries of the nanostructure act to constrain the adiabatic quantum evolution. Wh...
We consider the combined effects of large spin-orbit couplings and a perpendicular magnetic field in...
Ferromagnetic metal rings of nanometre range widths and thicknesses exhibit fundamentally new spin s...
We study theoretically the spin-orbit interaction of low-energy electrons in semiconducting nanowire...
We demonstrate that the spin orientation of an electron propagating in a one-dimensional nanostructu...
We demonstrate that the spin orientation of an electron propagating in a one-dimensional nanostructu...
We investigate the nature of the superconducting (SC) state in curved nanostructures with Rashba spi...
We investigate the nature of the superconducting state in curved nanostructures with Rashba spin-orb...
Since the formulation of the geometric phase by Berry, its relevance has been demonstrated in a larg...
We prove that curvature effects in low-dimensional nanomaterials can promote the generation of topol...
We calculate the oscillations of the dc conductance across a mesoscopic ring, simultaneously tuned b...
We investigate a class of cyclic evolutions for %the cyclic evolution of driven two-level quantum sy...
We consider the combined effects of large spin-orbit couplings and a perpendicular magnetic field in...
Ferromagnetic metal rings of nanometre range widths and thicknesses exhibit fundamentally new spin s...
We study theoretically the spin-orbit interaction of low-energy electrons in semiconducting nanowire...
We demonstrate that the spin orientation of an electron propagating in a one-dimensional nanostructu...
We demonstrate that the spin orientation of an electron propagating in a one-dimensional nanostructu...
We investigate the nature of the superconducting (SC) state in curved nanostructures with Rashba spi...
We investigate the nature of the superconducting state in curved nanostructures with Rashba spin-orb...
Since the formulation of the geometric phase by Berry, its relevance has been demonstrated in a larg...
We prove that curvature effects in low-dimensional nanomaterials can promote the generation of topol...
We calculate the oscillations of the dc conductance across a mesoscopic ring, simultaneously tuned b...
We investigate a class of cyclic evolutions for %the cyclic evolution of driven two-level quantum sy...
We consider the combined effects of large spin-orbit couplings and a perpendicular magnetic field in...
Ferromagnetic metal rings of nanometre range widths and thicknesses exhibit fundamentally new spin s...
We study theoretically the spin-orbit interaction of low-energy electrons in semiconducting nanowire...