We investigate generic Hamiltonians for confined electrons with weak inhomogeneous spin-orbit coupling. Using a local gauge transformation we show how the SU(2) Hamiltonian structure reduces to a U(1)×U(1) structure for spinless fermions in a fictitious orbital magnetic field, to leading order in the spin-orbit strength. Using an Onsager relation, we further show how the resulting spin conductance vanishes in a two-terminal setup, and how it is turned on by either weakly breaking time-reversal symmetry or opening additional transport terminals, thus allowing one to switch the generated spin current on or off. We numerically check our theory for mesoscopic cavities as well as Aharonov-Bohm rings
We present a theoretical study exposing the dominant microscopic electronic transport mechanisms und...
We consider the possibility to employ a quantum wire realized in a two-dimensional electron gas (2DE...
We investigate the magnetoelectric (or inverse spin-galvanic) effect in the two dimensional electron...
We investigate generic Hamiltonians for confined electrons with weak inhomogeneous spin-orbit coupli...
Spin-orbit interaction (SOI) has been a key tool to steer and manipulate spin-dependent transport pr...
Spin-orbit interaction (SOI) has been a key tool to steer and manipulate spin-dependent transport pr...
In this thesis, we focus on manipulating spin-orbit interaction to generate spin-dependent transport...
This dissertation focuses on spin based phenomena of transport in low-dimensional mesoscopic systems...
Theory predicts for the two-dimensional electron gas with only a Rashba spin-orbit interaction a van...
When time-reversal symmetry is broken, quantum coherent systems with and without spin rotational sym...
Journals published by the American Physical Society can be found at http://journals.aps.org/We inves...
We investigate the possiblity of creating directed spin-polarized currents in a two-dimensional elec...
The spin-orbit (SO) interaction couples electron spin and momentum via a relativistic, effective mag...
In layered semiconductors with spin-orbit interaction (SOI) a persistent spin helix (PSH) state with...
We present a theoretical study exposing the dominant microscopic electronic transport mechanisms und...
We consider the possibility to employ a quantum wire realized in a two-dimensional electron gas (2DE...
We investigate the magnetoelectric (or inverse spin-galvanic) effect in the two dimensional electron...
We investigate generic Hamiltonians for confined electrons with weak inhomogeneous spin-orbit coupli...
Spin-orbit interaction (SOI) has been a key tool to steer and manipulate spin-dependent transport pr...
Spin-orbit interaction (SOI) has been a key tool to steer and manipulate spin-dependent transport pr...
In this thesis, we focus on manipulating spin-orbit interaction to generate spin-dependent transport...
This dissertation focuses on spin based phenomena of transport in low-dimensional mesoscopic systems...
Theory predicts for the two-dimensional electron gas with only a Rashba spin-orbit interaction a van...
When time-reversal symmetry is broken, quantum coherent systems with and without spin rotational sym...
Journals published by the American Physical Society can be found at http://journals.aps.org/We inves...
We investigate the possiblity of creating directed spin-polarized currents in a two-dimensional elec...
The spin-orbit (SO) interaction couples electron spin and momentum via a relativistic, effective mag...
In layered semiconductors with spin-orbit interaction (SOI) a persistent spin helix (PSH) state with...
We present a theoretical study exposing the dominant microscopic electronic transport mechanisms und...
We consider the possibility to employ a quantum wire realized in a two-dimensional electron gas (2DE...
We investigate the magnetoelectric (or inverse spin-galvanic) effect in the two dimensional electron...