We theoretically study the spin pump effects of the rotating magnetic field on the spin current through two coupled quantum dots. Owing to the interdot coupling, two molecular states with different bands can be formed, resulting asymmetric spin current peaks. The possibility of manipulating the spin current is explored by tuning the strength, the frequency, and the direction of the rotating magnetic field. The number and location of the spin current peaks can be controlled by making use of various tunings. Furthermore, the normal 2π period of the spin current with respect to the magnetic flux can be destroyed by the interdot coupling
The purpose of this paper is to discuss how lateral semiconductor quantum dots can be used as pumps ...
We carried out a nested Schrieffer-Wolff transformation of an Anderson two-impurity Hamiltonian to s...
Circulating orbital currents produced by the spin-orbit interaction for a single electron spin in a ...
We theoretically study the spin pump effects of the rotating magnetic field on the spin current thro...
Dynamics of two quantum dots coupled to electrodes with spin bias is investigated theoretically by m...
We investigate mesoscopic spin transport through a quantum dot (QD) responded by a rotating and an o...
We investigate mesoscopic transport through a system that consists of a central quantum dot (QD) and...
With the help of the nonequilibrium Green's function method, the quantum pump in an Aharonov-Bohm in...
The spin-pump effects caused by the rotating magnetic field on the supercurrent in a superconductor-...
A spin device with three normal metal leads via triple quantum dot in the presence of Rashba spin-or...
Spin and orbital degrees of freedom play different roles in quantum transport through nanostructures...
Formation of a magnetic hysteresis loop with respect to a bias voltage is investigated theoretically...
Spin related effects in electronic transport through quantum dots, coupled via tunneling barriers to...
\u3cp\u3eWe develop a theory for spin transport and magnetization dynamics in a quantum dot spin val...
We first bring up the concept of the spin-current Seebeck effect based on a recent experiment (Vera-...
The purpose of this paper is to discuss how lateral semiconductor quantum dots can be used as pumps ...
We carried out a nested Schrieffer-Wolff transformation of an Anderson two-impurity Hamiltonian to s...
Circulating orbital currents produced by the spin-orbit interaction for a single electron spin in a ...
We theoretically study the spin pump effects of the rotating magnetic field on the spin current thro...
Dynamics of two quantum dots coupled to electrodes with spin bias is investigated theoretically by m...
We investigate mesoscopic spin transport through a quantum dot (QD) responded by a rotating and an o...
We investigate mesoscopic transport through a system that consists of a central quantum dot (QD) and...
With the help of the nonequilibrium Green's function method, the quantum pump in an Aharonov-Bohm in...
The spin-pump effects caused by the rotating magnetic field on the supercurrent in a superconductor-...
A spin device with three normal metal leads via triple quantum dot in the presence of Rashba spin-or...
Spin and orbital degrees of freedom play different roles in quantum transport through nanostructures...
Formation of a magnetic hysteresis loop with respect to a bias voltage is investigated theoretically...
Spin related effects in electronic transport through quantum dots, coupled via tunneling barriers to...
\u3cp\u3eWe develop a theory for spin transport and magnetization dynamics in a quantum dot spin val...
We first bring up the concept of the spin-current Seebeck effect based on a recent experiment (Vera-...
The purpose of this paper is to discuss how lateral semiconductor quantum dots can be used as pumps ...
We carried out a nested Schrieffer-Wolff transformation of an Anderson two-impurity Hamiltonian to s...
Circulating orbital currents produced by the spin-orbit interaction for a single electron spin in a ...