Quantum oscillations of the spin conductance through regular and chaotic 2D quantum dots under the varying Rashba spin-orbit interaction and at zero magnetic field have been investigated numerically by summing up the spin evolution matrices for classical transmitting trajectories. The Fourier analysis of these oscillations indicates a strong geometry dependence of the power spectra. The spectra for narrow rings are dominated by a single peak as previous analytic result, for regular quantum dots are represented by multiple peaks, and for chaotic quantum dots by quasi-continuum peaks
Current fluctuations can provide additional insight into quantum transport in mesoscopic systems. Th...
We have investigated the transport of spin polarization through a classically chaotic semiconductor ...
This thesis describes a number of experiments performed in quantum dots as well as 2D systems fabric...
We performed path integral simulations of spin evolution controlled by the Rashba spin-orbit interac...
Spin-dependent electronic transport through two coupled single-level quantum dots attached to ferrom...
The effects of interplay between spin-orbit coupling and Zeeman splitting on weak localization and u...
In the presence of both spin-orbit scattering and a magnetic field the conductance of a chaotic GaAs...
AbstractWe theoretically propose a double quantum dots (QDs) ring to filter the electron spin that w...
A numerical study on spin-polarized transport properties in a quasi-one-dimensional wire with Rashba...
There have been intense research efforts over the last years focused on understanding the Rashba spi...
We present a theoretical study of the spin-dependent conductance spectra in a FM/semiconductor quant...
We investigate electric field control of spin manipulation through Berry phase in III-V semiconducto...
We consider the full driven quantum dynamics of a qubit realized as spin of electron in a one-dimens...
We report a thorough theoretical investigation on the quantum transport of a disordered four termina...
A spin device with three normal metal leads via triple quantum dot in the presence of Rashba spin-or...
Current fluctuations can provide additional insight into quantum transport in mesoscopic systems. Th...
We have investigated the transport of spin polarization through a classically chaotic semiconductor ...
This thesis describes a number of experiments performed in quantum dots as well as 2D systems fabric...
We performed path integral simulations of spin evolution controlled by the Rashba spin-orbit interac...
Spin-dependent electronic transport through two coupled single-level quantum dots attached to ferrom...
The effects of interplay between spin-orbit coupling and Zeeman splitting on weak localization and u...
In the presence of both spin-orbit scattering and a magnetic field the conductance of a chaotic GaAs...
AbstractWe theoretically propose a double quantum dots (QDs) ring to filter the electron spin that w...
A numerical study on spin-polarized transport properties in a quasi-one-dimensional wire with Rashba...
There have been intense research efforts over the last years focused on understanding the Rashba spi...
We present a theoretical study of the spin-dependent conductance spectra in a FM/semiconductor quant...
We investigate electric field control of spin manipulation through Berry phase in III-V semiconducto...
We consider the full driven quantum dynamics of a qubit realized as spin of electron in a one-dimens...
We report a thorough theoretical investigation on the quantum transport of a disordered four termina...
A spin device with three normal metal leads via triple quantum dot in the presence of Rashba spin-or...
Current fluctuations can provide additional insight into quantum transport in mesoscopic systems. Th...
We have investigated the transport of spin polarization through a classically chaotic semiconductor ...
This thesis describes a number of experiments performed in quantum dots as well as 2D systems fabric...