International audienceIn a crystal, thermal vibrations of neighboring atoms are correlated: long wavelength phonons make them displace in the same direction. These correlations can speed up the dechanneling of axially channeled particles, as shown by a simulation with binary collisions and a Markov chain model of atom vibrations. In the case of e+ or e- at small angle with a crystal axis, the correlated vibrations should give rise to a semi-coherent bremsstrahlung on several consecutive atoms of a row
Recent computer simulation studies contain sufficient information about the atomic disorder and moti...
yesThe incoherent bremsstrahlung of fast electrons in crystal is caused by thermal spread of atoms f...
An improved method for light scattering from acoustic phonons in small, low- symmetry solids is desc...
International audienceIn a crystal, thermal vibrations of neighboring atoms are correlated: long wav...
International audienceParticles traveling in aligned crystals at small angles w.r.t. crystallographi...
A teaching review is presented, introducing the basic principles of thermal motions of atoms in crys...
This article addresses aspects of thermal equilibrium of light contaminant atoms in crystals. Long-w...
Many-particle perturbation theory and diagram techniques are used to examine the effects of phonon-p...
According to the theory of specific heats developed by Debye, Nernst, and others, the thermal energy...
The dynamics of atomic motion in a model crystal has been analyzed by numerically solving Newton's e...
A theory describing the time evolution of coherent scattering of a synchrotron radiation pulse by a ...
A microscopic model for the origin of the source correlations responsible for Wolf shifts is propose...
A new method - atomic correlation method for describing structures of solids is presented. We begin ...
A general discussion is given for the diffuse scattering by a crystal containing irregular atomic ar...
A general analytic and very rapid method for the calculation of the mean square vibration amplitude ...
Recent computer simulation studies contain sufficient information about the atomic disorder and moti...
yesThe incoherent bremsstrahlung of fast electrons in crystal is caused by thermal spread of atoms f...
An improved method for light scattering from acoustic phonons in small, low- symmetry solids is desc...
International audienceIn a crystal, thermal vibrations of neighboring atoms are correlated: long wav...
International audienceParticles traveling in aligned crystals at small angles w.r.t. crystallographi...
A teaching review is presented, introducing the basic principles of thermal motions of atoms in crys...
This article addresses aspects of thermal equilibrium of light contaminant atoms in crystals. Long-w...
Many-particle perturbation theory and diagram techniques are used to examine the effects of phonon-p...
According to the theory of specific heats developed by Debye, Nernst, and others, the thermal energy...
The dynamics of atomic motion in a model crystal has been analyzed by numerically solving Newton's e...
A theory describing the time evolution of coherent scattering of a synchrotron radiation pulse by a ...
A microscopic model for the origin of the source correlations responsible for Wolf shifts is propose...
A new method - atomic correlation method for describing structures of solids is presented. We begin ...
A general discussion is given for the diffuse scattering by a crystal containing irregular atomic ar...
A general analytic and very rapid method for the calculation of the mean square vibration amplitude ...
Recent computer simulation studies contain sufficient information about the atomic disorder and moti...
yesThe incoherent bremsstrahlung of fast electrons in crystal is caused by thermal spread of atoms f...
An improved method for light scattering from acoustic phonons in small, low- symmetry solids is desc...