The purpose of this study is to investigate the modes of vibration of the self-interstitial atoms and the vacancy in bcc iron and to estimate how the vibrational properties can affect the stability of these defects. The phonon density of states of the vacancy and the self-interstitials have been calculated within the quasi harmonic approximation using density functional theory calculations. It was observed that self-interstitial atoms have several localized high frequency modes of vibration related to the stretching of the dumbbell bond, but also soft modes favoring their migration. From the phonon density of states, the vibrational contributions to the free energy have been estimated for finite temperatures. Results are compared to previou...
Disorder in crystalline materials can take different forms and originate from different sources. In ...
Various point defect configurations have been studied using discrete lattice models. In particular a...
The diffusivities of substitutional impurity elements in iron have been computed with ab inito elect...
xxv, 233 leaves : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577P EIE 2013 WenSpin-lattice dy...
International audienceUsing first-principles phonon calculations and the Quasi-Harmonic approach, th...
We study the impact of lattice vibrations on magnetic and electronic properties of paramagnetic bcc ...
We have constructed a set of embedded atom method (EAM) potentials for Fe, Ta, W and V and used them...
Numerous computational and experimental studies on the crystal structure of metals near the melt lin...
Defects change the phonon spectrum and also the magnetic properties of bcc-Fe. Using molecular dynam...
A new analytic bond-order potential for iron is presented that has been fitted to experimental data ...
International audienceThe relaxation volume ( rel), here determined per extra-atom or vacant site, o...
We present a first-principles theoretical approach to calculate temperature dependent phonon dispers...
In this thesis, quantum-mechanical calculations within density-functional theory on metallic systems...
A tight-binding type electronic theory is used to calculate the binding energy Ebin, atomic relaxati...
Disorder in crystalline materials can take different forms and originate from different sources. In ...
Various point defect configurations have been studied using discrete lattice models. In particular a...
The diffusivities of substitutional impurity elements in iron have been computed with ab inito elect...
xxv, 233 leaves : ill. ; 30 cm.PolyU Library Call No.: [THS] LG51 .H577P EIE 2013 WenSpin-lattice dy...
International audienceUsing first-principles phonon calculations and the Quasi-Harmonic approach, th...
We study the impact of lattice vibrations on magnetic and electronic properties of paramagnetic bcc ...
We have constructed a set of embedded atom method (EAM) potentials for Fe, Ta, W and V and used them...
Numerous computational and experimental studies on the crystal structure of metals near the melt lin...
Defects change the phonon spectrum and also the magnetic properties of bcc-Fe. Using molecular dynam...
A new analytic bond-order potential for iron is presented that has been fitted to experimental data ...
International audienceThe relaxation volume ( rel), here determined per extra-atom or vacant site, o...
We present a first-principles theoretical approach to calculate temperature dependent phonon dispers...
In this thesis, quantum-mechanical calculations within density-functional theory on metallic systems...
A tight-binding type electronic theory is used to calculate the binding energy Ebin, atomic relaxati...
Disorder in crystalline materials can take different forms and originate from different sources. In ...
Various point defect configurations have been studied using discrete lattice models. In particular a...
The diffusivities of substitutional impurity elements in iron have been computed with ab inito elect...