Finite-element methods are used to simulate a heterostructured nanowire grown on a compliant mesa substrate. The critical thickness is calculated based on the overall energy balance approach. The strain field created by the first pair of misfit dislocations, which offsets the initial coherent strain field, is simulated. The local residual strain is used to calculate the total residual strain energy. The three-dimensional model shows that there exists a radius-dependent critical thickness below which no misfit dislocations could be generated. Moreover, this critical thickness becomes infinity for a radius less than some critical values. The simulated results are in good agreement with the experimental data. The critical radius from this work...
In this paper, we demonstrate the key issues of axial nanowire heterostructures, such as, the fundam...
Controlling the strain level in nanowire heterostructures is critical for obtaining coherent interfa...
We present a theoretical model to calculate the flexural rigidity of nanowires from three-dimensiona...
Finite-element methods are used to simulate a heterostructured nanowire grown on a compliant mesa su...
In this thesis, a self-consistent model is presented to describe the concepts of strain partitioning...
In this work we model the evolution of strain energy during different growth stages of heterostructu...
Employing crystal plasticity theory and micromechanics inclusion theory, we developed a full-strain ...
8 pages, 6 figuresControlling the strain level in nanowire heterostructures is critical for obtainin...
International audienceStrain engineering is a powerful tool to tailor the physical properties of mat...
Axially heterostructured nanowires are a promising platform for next generation electronic and optoe...
Thanks to their unique morphology, nanowires have enabled integration of materials in a way that was...
When two materials with different lattice constants are grown together, this generates stress betwee...
International audienceA finite element procedure for modeling crystalline nanostructures such as nan...
We are briefly reviewing the current status of elastic strain field determination in III–V heteroepi...
The quality of lattice-mismatched semiconductor heterojunctions is often limited by the presence of ...
In this paper, we demonstrate the key issues of axial nanowire heterostructures, such as, the fundam...
Controlling the strain level in nanowire heterostructures is critical for obtaining coherent interfa...
We present a theoretical model to calculate the flexural rigidity of nanowires from three-dimensiona...
Finite-element methods are used to simulate a heterostructured nanowire grown on a compliant mesa su...
In this thesis, a self-consistent model is presented to describe the concepts of strain partitioning...
In this work we model the evolution of strain energy during different growth stages of heterostructu...
Employing crystal plasticity theory and micromechanics inclusion theory, we developed a full-strain ...
8 pages, 6 figuresControlling the strain level in nanowire heterostructures is critical for obtainin...
International audienceStrain engineering is a powerful tool to tailor the physical properties of mat...
Axially heterostructured nanowires are a promising platform for next generation electronic and optoe...
Thanks to their unique morphology, nanowires have enabled integration of materials in a way that was...
When two materials with different lattice constants are grown together, this generates stress betwee...
International audienceA finite element procedure for modeling crystalline nanostructures such as nan...
We are briefly reviewing the current status of elastic strain field determination in III–V heteroepi...
The quality of lattice-mismatched semiconductor heterojunctions is often limited by the presence of ...
In this paper, we demonstrate the key issues of axial nanowire heterostructures, such as, the fundam...
Controlling the strain level in nanowire heterostructures is critical for obtaining coherent interfa...
We present a theoretical model to calculate the flexural rigidity of nanowires from three-dimensiona...