Magnetic polaron (MP) formation is studied theoretically in a single-electron transistor (SET) consisting of a ferromagnetic semiconductor quantum dot (FSQD) coupled to nonmagnetic source, drain, and gate electrodes. Especially, using Green's-function technique we calculate the effect of the gate-voltage-dependent spin polarization of the charge-carrier spins on the magnetization and conductance of the ferromagnetic semiconductor SET in the Coulomb blockade regime. We apply the Anderson impurity model to the FSQD and the ferromagnetic subsystem inside the FSQD is treated in the mean-field approximation. By minimizing the total free energy of the FSQD we calculate the MP binding energy and the dot magnetization as a function of temperature a...
We study a single-electron transistor (SET) based upon a II–VI semiconductor quantum dot doped with ...
This report describes experimental work performed on highly phosphorous doped silicon single electro...
Electric-field manipulation of ferromagnetism has the potential for developing a new generation of e...
Magnetic polaron (MP) formation is studied theoretically in a single-electron transistor (SET) consi...
In a magnetic single electron transistor (SET), which consists of a magnetic quantum dot (QD) couple...
Semiconductor quantum dots (QDs) doped with magnetic impurities have been a focus of continuous rese...
We theoretically study electrical transport in a single-electron transistor (SET) consisting of a ma...
A complete self-consistent fi ite temperature theory of magnetic poiaron states with damping ina fer...
We present an Anderson-type model Hamiltonian with exchange coupling between the localized spins and...
We study the heat generation in ferromagnet-quantum dot-ferromagnet system by the non-equilibrium Gr...
We construct exact Green's functions for a single electron in a ferromagnetic semiconductor, includi...
We theoretically study the magnetic polaron (MP) formation in a ferromagnetic graphene single-electr...
Electric-field manipulation of ferromagnetism has the potential for developing a new generation of e...
© 2020 Elsevier B.V. Current–voltage characteristics of a spintromechanical device, in which spin-po...
The magnetoexciton polaron (MP) is investigated theoretically in a diluted magnetic semiconductor qu...
We study a single-electron transistor (SET) based upon a II–VI semiconductor quantum dot doped with ...
This report describes experimental work performed on highly phosphorous doped silicon single electro...
Electric-field manipulation of ferromagnetism has the potential for developing a new generation of e...
Magnetic polaron (MP) formation is studied theoretically in a single-electron transistor (SET) consi...
In a magnetic single electron transistor (SET), which consists of a magnetic quantum dot (QD) couple...
Semiconductor quantum dots (QDs) doped with magnetic impurities have been a focus of continuous rese...
We theoretically study electrical transport in a single-electron transistor (SET) consisting of a ma...
A complete self-consistent fi ite temperature theory of magnetic poiaron states with damping ina fer...
We present an Anderson-type model Hamiltonian with exchange coupling between the localized spins and...
We study the heat generation in ferromagnet-quantum dot-ferromagnet system by the non-equilibrium Gr...
We construct exact Green's functions for a single electron in a ferromagnetic semiconductor, includi...
We theoretically study the magnetic polaron (MP) formation in a ferromagnetic graphene single-electr...
Electric-field manipulation of ferromagnetism has the potential for developing a new generation of e...
© 2020 Elsevier B.V. Current–voltage characteristics of a spintromechanical device, in which spin-po...
The magnetoexciton polaron (MP) is investigated theoretically in a diluted magnetic semiconductor qu...
We study a single-electron transistor (SET) based upon a II–VI semiconductor quantum dot doped with ...
This report describes experimental work performed on highly phosphorous doped silicon single electro...
Electric-field manipulation of ferromagnetism has the potential for developing a new generation of e...