Atomic vibrations weave into the fabric of the materials properties landscape in a diverse multitude of ways. They play a major role in specific heat and thermodynamic properties, they affect electronic transport as electron scatterers, they are central to thermal expansion and high-temperature thermal stability, and they alter the intensity of scattered data in probing the crystal structure of a material.While there are cases where the static lattice model gives a reasonable description of materials in the solid state, there are other situations where the assumption of immobile atoms locked into fixed sites fails dramatically. For this work, the role of atomic motion is investigated for a group of materials known as Mn+1AXn ("MAX") phas...
An atomic structure-based model for high-temperature lattice conductivity is developed for both comp...
In semiconductors almost all heat is conducted by phonons (lattice vibrations), which is limited by ...
The ultrafast dynamics of electrons and collective modes in systems out of equilibrium is crucially ...
The Mn+1AXn phases (n=1,2, or 3) or MAX phases , where M is a transition metal, A is an A- group ...
This thesis presents theoretical research on MAX phases (M=transition metal, A=A-group element, X=ca...
The MAX phases are nanolayered transition metal carbides and nitrides characterized by a unique comb...
The MAX phase family is a set of nanolaminated, hexagonal materials typically comprised of three ele...
Structural components and semiconductor devices based on silicon nitride, aluminum nitride and galli...
Progress in materials science through thermodynamic modelling may rest crucially on access to a data...
The temperature dependent lattice thermal conductivity (κph) of MAX phases, Mn+1AXn are calculated u...
A6. Computational Study on Nanoscale Materials: Materials Properties - paper no. A6-26Lattice compon...
A detailed understanding of fundamental material properties can be obtained through the study of ato...
While the vibrational thermodynamics of materials with small anharmonicity at low temperatures has b...
The elastic constants of Mg(1-x)AlxB2 have been calculated in the regime 0<x<0.25. The calcula...
In semiconductors almost all heat is conducted by phonons (lattice vibrations), which is limited by ...
An atomic structure-based model for high-temperature lattice conductivity is developed for both comp...
In semiconductors almost all heat is conducted by phonons (lattice vibrations), which is limited by ...
The ultrafast dynamics of electrons and collective modes in systems out of equilibrium is crucially ...
The Mn+1AXn phases (n=1,2, or 3) or MAX phases , where M is a transition metal, A is an A- group ...
This thesis presents theoretical research on MAX phases (M=transition metal, A=A-group element, X=ca...
The MAX phases are nanolayered transition metal carbides and nitrides characterized by a unique comb...
The MAX phase family is a set of nanolaminated, hexagonal materials typically comprised of three ele...
Structural components and semiconductor devices based on silicon nitride, aluminum nitride and galli...
Progress in materials science through thermodynamic modelling may rest crucially on access to a data...
The temperature dependent lattice thermal conductivity (κph) of MAX phases, Mn+1AXn are calculated u...
A6. Computational Study on Nanoscale Materials: Materials Properties - paper no. A6-26Lattice compon...
A detailed understanding of fundamental material properties can be obtained through the study of ato...
While the vibrational thermodynamics of materials with small anharmonicity at low temperatures has b...
The elastic constants of Mg(1-x)AlxB2 have been calculated in the regime 0<x<0.25. The calcula...
In semiconductors almost all heat is conducted by phonons (lattice vibrations), which is limited by ...
An atomic structure-based model for high-temperature lattice conductivity is developed for both comp...
In semiconductors almost all heat is conducted by phonons (lattice vibrations), which is limited by ...
The ultrafast dynamics of electrons and collective modes in systems out of equilibrium is crucially ...