International audienceA model is proposed to describe the linear and quadratic piezoelectric potentials in quantum nanostructures with axial symmetry. Semianalytical expressions of the charge densities are given to illustrate the symmetry reduction. The results for InAs/InP quantum dots (QDs) are compared to previous full three-dimensional calculation and to the full isotropic elastic model. The model is well adapted to study various effects for QD: the lattice mismatch, the QD materials composition or alloying, and the QD size or shape. Special emphasis is put on variations of the vertical aspect ratio and the role of the wetting layer
By introducing a homogeneous piezoelectric material and its Green's function, we present a new ...
AbstractCharacteristics of the self-organized quantum dots (QDs) such as electron and hole energy le...
Recent investigations on multifunctional piezoelectric semiconductors have shown their excellent pot...
Symmetry analyses and semi analytical models are proposed to describe the mechanical, piezoelectric ...
International audienceA symmetry analysis and a semianalytical exact model are proposed to describe ...
International audienceA complete semianalytical model is proposed for the simulation of the electron...
The strain fields in and around self-organized In(Ga)As/GaAs quantum dots (QD) sensitively depend on...
The strain fields in and around self-organized In(Ga)As/GaAs quantum dots (QD) sensitively depend on...
An accurate determination of the two- and three-dimensional electro-elastic fields of periodically a...
We present an exact diagonalization approach for atomistic calculation of excitonic properties of se...
AbstractBy introducing a homogeneous piezoelectric material and its Green’s function, we present a n...
Advances in nanofabrication techniques have opened a plethora of opportunities to exploit the electr...
International audienceVertically stacked InAs/InP columnar quantum dots (CQDs) for polarization inse...
The strain fields in and around self-organized In(Ga)As∕GaAs quantum dots (QDs) sensitively depend o...
The piezopotential in floating, homogeneous, quasi-1D piezo-semiconductive nanostructures under axia...
By introducing a homogeneous piezoelectric material and its Green's function, we present a new ...
AbstractCharacteristics of the self-organized quantum dots (QDs) such as electron and hole energy le...
Recent investigations on multifunctional piezoelectric semiconductors have shown their excellent pot...
Symmetry analyses and semi analytical models are proposed to describe the mechanical, piezoelectric ...
International audienceA symmetry analysis and a semianalytical exact model are proposed to describe ...
International audienceA complete semianalytical model is proposed for the simulation of the electron...
The strain fields in and around self-organized In(Ga)As/GaAs quantum dots (QD) sensitively depend on...
The strain fields in and around self-organized In(Ga)As/GaAs quantum dots (QD) sensitively depend on...
An accurate determination of the two- and three-dimensional electro-elastic fields of periodically a...
We present an exact diagonalization approach for atomistic calculation of excitonic properties of se...
AbstractBy introducing a homogeneous piezoelectric material and its Green’s function, we present a n...
Advances in nanofabrication techniques have opened a plethora of opportunities to exploit the electr...
International audienceVertically stacked InAs/InP columnar quantum dots (CQDs) for polarization inse...
The strain fields in and around self-organized In(Ga)As∕GaAs quantum dots (QDs) sensitively depend o...
The piezopotential in floating, homogeneous, quasi-1D piezo-semiconductive nanostructures under axia...
By introducing a homogeneous piezoelectric material and its Green's function, we present a new ...
AbstractCharacteristics of the self-organized quantum dots (QDs) such as electron and hole energy le...
Recent investigations on multifunctional piezoelectric semiconductors have shown their excellent pot...