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A. Stroppa

Publications and source records attributed to A. Stroppa.

21 records · Page 2Linked to original sources

Structural and magnetic properties of Mn-doped GaAs(110) surface

We have investigated STM images of the (110) cross-sectional surface of Mn-doped GaAs using first principles total-energy pseudopotential calculations. We focus on configurations with Mn interstitial in the uppermost surface layers. In particular, we have found that Mn impurities, surrounded by Ga or As atoms, introduce in both cases strong local distortions in the GaAs(110) surface, with bond length variations up to 8 % on surface and non-negligible relaxations effects propagating up to the third sub-surface layer. In both cases interstitial Mn induces a spin-polarization on its nearest neighbors, giving rise to a ferromagnetic Mn-As and to antiferromagnetic Mn-Ga configuration.

cond-mat.mtrl-sci↗

Composition and strain dependence of band offsets at metamorphic In$_{x}$Ga$_{1-x}$As/In$_{y}$Al$_{1-y}$As heterostructures

We have studied the In$_{x}$Ga$_{1-x}$As/In$_{y}$Al$_{1-y}$As (001) interface using first-principles ab-initio pseudopotential calculations, focusing on the effects of alloy composition and strain state on the electronic properties. In particular we estimate a valence band offset (VBO) of 0.11 eV (InGaAs higher), including spin-orbit and self-energy corrections, for a strain-compensated configuration with homogenous composition $x=y=0.75$ on a lattice-matched substrate. Unintentional composition fluctuations which are typically limited to a few percent and different short-range order effects give rise only to small variations on the VBO, of the order of 0.1 eV or less, whereas intentional substantial changes in the alloys composition allow to achieve a high tunability of band offsets. We predict a VBO varying in a range of about 1.1 eV for interfaces between the pure arsenides in different strain states as extreme cases of composition variation at In$_{x}$Ga$_{1-x}$As/In$_{y}$Al$_{1-y}$As heterostructures.

cond-mat.mtrl-sci↗

Structural properties and stability of defected ZnSe/GaAs(001) interfaces

Accurate ab-initio pseudopotential calculations within density functional theory in the LDA approximation have been performed for structural properties and stability of ZnSe/GaAs(001) defected heterostructures. There is a strong experimental evidence that ZnSe/GaAs heterostructures with minimum stacking fault density are related to the presence of a substantial concentration of Ga vacancies at interface. In order to gain insights into the still unknown microscopic maechanism governing their formation and stability, we compared the relative stability of some simple selected interface configurations, chosen taking into account charge neutrality prescription and allowing the presence of Ga vacancy next to the interface. Remarkably, our results show that, under particular thermodynamic conditions, some interfaces with vacancies are favoured over undefected ones.

cond-mat.mtrl-sci↗