We report on a general theory for analyzing quantum transport through devices in the metal-QD-metal configuration where QD is a quantum dot or the device-scattering region which contains Rashba spin-orbital and electron-electron interactions. The metal leads may or may not be ferromagnetic, and they are assumed to weakly couple to the QD region. Our theory is formulated by second quantizing the Rashba spin-orbital interaction in spectral space (instead of real space), and quantum transport is then analyzed within the Keldysh nonequilibrium Green's function formalism. The Rashba interaction causes two main effects to the Hamiltonian: (i) it gives rise to an extra spin-dependent phase factor in the coupling matrix elements between the leads a...
In this review article we describe spin-dependent transport in materials with spin–orbit interaction...
We study the theory of temperature-dependent electron transport, spin polarization, and spin accumul...
The study of spin transport has emerged at the forefront of condensed matter physics during the last...
In this review article we describe spin-dependent transport in materials with spin-orbit interactio...
A numerical study on spin-polarized transport properties in a quasi-one-dimensional wire with Rashba...
A spin device with three normal metal leads via triple quantum dot in the presence of Rashba spin-or...
This work was dedicated to the theoretical study of semiconductor nanostructures aimed at the implem...
We study electron transport through an Aharonov-Bohm (AB) interferometer with a noninteracting quant...
In this thesis we introduce modeling of electron transport through semiconductor nanostructures. An ...
We present a theoretical study of the spin-dependent conductance spectra in a FM/semiconductor quant...
Spin-dependent electron transport in a periodically stubbed quantum wire in the presence of Rashba s...
We consider the electronic transport through a Rashba quantum dot coupled to ferromagnetic leads. We...
We study the theory of temperature-dependent electron transport, spin polarization, and spin accumul...
Recently, the spin-orbit coupling and spin current in nanodevice have been investigated extensively....
This thesis is a theoretical study of the e ect of spin-charge coupled dynamics on the transport pro...
In this review article we describe spin-dependent transport in materials with spin–orbit interaction...
We study the theory of temperature-dependent electron transport, spin polarization, and spin accumul...
The study of spin transport has emerged at the forefront of condensed matter physics during the last...
In this review article we describe spin-dependent transport in materials with spin-orbit interactio...
A numerical study on spin-polarized transport properties in a quasi-one-dimensional wire with Rashba...
A spin device with three normal metal leads via triple quantum dot in the presence of Rashba spin-or...
This work was dedicated to the theoretical study of semiconductor nanostructures aimed at the implem...
We study electron transport through an Aharonov-Bohm (AB) interferometer with a noninteracting quant...
In this thesis we introduce modeling of electron transport through semiconductor nanostructures. An ...
We present a theoretical study of the spin-dependent conductance spectra in a FM/semiconductor quant...
Spin-dependent electron transport in a periodically stubbed quantum wire in the presence of Rashba s...
We consider the electronic transport through a Rashba quantum dot coupled to ferromagnetic leads. We...
We study the theory of temperature-dependent electron transport, spin polarization, and spin accumul...
Recently, the spin-orbit coupling and spin current in nanodevice have been investigated extensively....
This thesis is a theoretical study of the e ect of spin-charge coupled dynamics on the transport pro...
In this review article we describe spin-dependent transport in materials with spin–orbit interaction...
We study the theory of temperature-dependent electron transport, spin polarization, and spin accumul...
The study of spin transport has emerged at the forefront of condensed matter physics during the last...