Materials at extreme conditions exhibit properties that differ substantially from ambient conditions. High pressure and high temperature expose anharmonic, non-linear behavior, and can provoke phase transitions among other effects. Experimental setups to study that sort of effects are typically costly and experiments themselves are laborious. It is common to apply theoretical techniques in order to provide a road-map for experimental research. In this thesis I cover computational algorithms based on first-principles calculations for high-temperature and high-pressure conditions. The two thoroughly described algorithms are: 1) the free energy studies using temperature-dependent effective potential method (TDEP), and 2) a higher-order elastic...
Computational models can support materials development by identifying the key factors that a ect mat...
Novel methods based on the use of density functional theory (DFT) calculations are developed and app...
Extreme conditions of pressure, shear, and temp. can dramatically modify the structures and properti...
Materials at extreme conditions exhibit properties that differ substantially from ambient conditions...
The investigation of materials at extreme conditions of high pressure and temperature (high-PT), has...
This article shows a parallel algorithm developed to simulate the electric voltage profile applied t...
Extreme conditions allow us to reveal unusual material properties. At the same time an experimental ...
In this thesis, material properties have been examined under extreme conditions in computer-based ca...
The present work describes the use of atomistic computer simulations in the area of Condensed Matter...
The reason to perform calculations in material science usually falls into one of two categories: to ...
Measurements of iron at extreme pressures do not agree on the melting temperature for conditions com...
The prediction of the structure of a crystal given only the constituent elements is one of the great...
The present thesis is concerned to the application of first-principles self-consistent total-energy ...
The study of materials properties under extreme conditions has made considerable progress over the p...
Diese Dissertation ist Teil des strategischen Projekts "Martensite - Exploiting its Features for Inn...
Computational models can support materials development by identifying the key factors that a ect mat...
Novel methods based on the use of density functional theory (DFT) calculations are developed and app...
Extreme conditions of pressure, shear, and temp. can dramatically modify the structures and properti...
Materials at extreme conditions exhibit properties that differ substantially from ambient conditions...
The investigation of materials at extreme conditions of high pressure and temperature (high-PT), has...
This article shows a parallel algorithm developed to simulate the electric voltage profile applied t...
Extreme conditions allow us to reveal unusual material properties. At the same time an experimental ...
In this thesis, material properties have been examined under extreme conditions in computer-based ca...
The present work describes the use of atomistic computer simulations in the area of Condensed Matter...
The reason to perform calculations in material science usually falls into one of two categories: to ...
Measurements of iron at extreme pressures do not agree on the melting temperature for conditions com...
The prediction of the structure of a crystal given only the constituent elements is one of the great...
The present thesis is concerned to the application of first-principles self-consistent total-energy ...
The study of materials properties under extreme conditions has made considerable progress over the p...
Diese Dissertation ist Teil des strategischen Projekts "Martensite - Exploiting its Features for Inn...
Computational models can support materials development by identifying the key factors that a ect mat...
Novel methods based on the use of density functional theory (DFT) calculations are developed and app...
Extreme conditions of pressure, shear, and temp. can dramatically modify the structures and properti...