Size and strain rate effects are among several factors which play an important role in determining the response of nanostructures, such as their deformations, to the mechanical loadings. The mechanical deformations in nanostructure systems at finite temperatures are intrinsically dynamic processes. Most of the recent works in this context have been focused on nanowires [1, 2], but very little attention has been paid to such low dimensional nanostructures as quantum dots (QDs). In this contribution, molecular dynamics (MD) simulations with an embedded atom potential method(EAM) are carried out to analyse the size and strain rate effects in the silicon (Si) QDs, as an\ud example. We consider various geometries of QDs such as spherical, cylind...
Strain in self-assembled quantum dots is a long-range phenomenon, and its realistic determination re...
Nanostructured semiconducting materials such as nanoparticles, quantum dots, nanowires, nanorods, na...
University of Minnesota Ph.D. dissertation. May 2011. Major: Material Science and Engineering. Advis...
Size and strain rate effects are among several factors which play an important role in determining t...
Structural properties of silicon nanorods generated from low-index plane surfaces (100), (110), and ...
Quantum dots (QDs) are nanometer scale regions that can trap charges. In this dissertation I describ...
An array of semiconductor quantum dots is studied computationally using an approach that couples lin...
The tension and compression of single-crystalline silicon nanowires (SiNWs) with different cross-sec...
A long-standing mystery in the field of semiconductor quantum dots (QDs) is: Why are there so many u...
Stress and strain in the structure of self-assembled quantum dots constructed in the Ge/Si(001) syst...
We have applied density-functional theory (DFT) based calculations to investigate the size and strai...
Recent measurements have indicated that the elastic behaviour of silicon nanocantilevers and nanowir...
Abstract: The effect of mechanical strain on the quantum confinement properties of quantum dots is a...
Recent measurements have indicated that the elastic behaviour of silicon nanocantilevers and nanowir...
2013-04-18Quantum dots (QDs) and nanowires (NWs) are being investigated as potential alternatives to...
Strain in self-assembled quantum dots is a long-range phenomenon, and its realistic determination re...
Nanostructured semiconducting materials such as nanoparticles, quantum dots, nanowires, nanorods, na...
University of Minnesota Ph.D. dissertation. May 2011. Major: Material Science and Engineering. Advis...
Size and strain rate effects are among several factors which play an important role in determining t...
Structural properties of silicon nanorods generated from low-index plane surfaces (100), (110), and ...
Quantum dots (QDs) are nanometer scale regions that can trap charges. In this dissertation I describ...
An array of semiconductor quantum dots is studied computationally using an approach that couples lin...
The tension and compression of single-crystalline silicon nanowires (SiNWs) with different cross-sec...
A long-standing mystery in the field of semiconductor quantum dots (QDs) is: Why are there so many u...
Stress and strain in the structure of self-assembled quantum dots constructed in the Ge/Si(001) syst...
We have applied density-functional theory (DFT) based calculations to investigate the size and strai...
Recent measurements have indicated that the elastic behaviour of silicon nanocantilevers and nanowir...
Abstract: The effect of mechanical strain on the quantum confinement properties of quantum dots is a...
Recent measurements have indicated that the elastic behaviour of silicon nanocantilevers and nanowir...
2013-04-18Quantum dots (QDs) and nanowires (NWs) are being investigated as potential alternatives to...
Strain in self-assembled quantum dots is a long-range phenomenon, and its realistic determination re...
Nanostructured semiconducting materials such as nanoparticles, quantum dots, nanowires, nanorods, na...
University of Minnesota Ph.D. dissertation. May 2011. Major: Material Science and Engineering. Advis...