Calculations of the A(1) phonon frequency in photoexcited tellurium are presented. The phonon frequency as a function of photoexcited carrier density and phonon amplitude is determined. Recent pump-probe experiments are interpreted in light of these calculations. It is proposed that, in conjunction with measurements of the phonon period in ultrafast pump-probe reflectivity experiments, the calculated frequency shifts can be used to infer the evolution of the density of photoexcited carriers on a subpicosecond time scale. (S0031-9007(99)09219-4)
: The coupling of the electron system to lattice vibrations and their time-dependent control and det...
The coupling of excitons with atomic vibrations plays a pivotal role on the nonequilibrium optical p...
Using 28-fs, 800-nm laser pulses we have coherently excited and subsequently probed, with time-depe...
We report femtosecond time-resolved reflectivity measurements of coherent phonons in tellurium perfo...
We investigate the dynamics of coherent optical phonons in tellurium after high-density excitation w...
We conducted time-resolved terahertz spectroscopy measurements on the elemental semiconductor tellur...
This electronic version was submitted by the student author. The certified thesis is available in th...
Journal ArticleUsing the picosecond pump and probe technique we have detected oscillations of photoi...
Contains an introduction and report on one research project.Joint Services Electronics Program Contr...
Article first published online: 19 AUG 2014Photochemistry is one of the most important branches in c...
We use an x-ray free-electron laser to study the ultrafast lattice dynamics following above band-gap...
Using time- and angle-resolved photoemission spectroscopy with selective near- and midinfrared photo...
Using time- and angle-resolved photoemission spectroscopy with selective near- and midinfrared photo...
There is a growing interest in the mode-by-mode understanding of electron and phonon transport for i...
The equilibration of electronic carriers in metals after excitation by an ultrashort laser pulse pro...
: The coupling of the electron system to lattice vibrations and their time-dependent control and det...
The coupling of excitons with atomic vibrations plays a pivotal role on the nonequilibrium optical p...
Using 28-fs, 800-nm laser pulses we have coherently excited and subsequently probed, with time-depe...
We report femtosecond time-resolved reflectivity measurements of coherent phonons in tellurium perfo...
We investigate the dynamics of coherent optical phonons in tellurium after high-density excitation w...
We conducted time-resolved terahertz spectroscopy measurements on the elemental semiconductor tellur...
This electronic version was submitted by the student author. The certified thesis is available in th...
Journal ArticleUsing the picosecond pump and probe technique we have detected oscillations of photoi...
Contains an introduction and report on one research project.Joint Services Electronics Program Contr...
Article first published online: 19 AUG 2014Photochemistry is one of the most important branches in c...
We use an x-ray free-electron laser to study the ultrafast lattice dynamics following above band-gap...
Using time- and angle-resolved photoemission spectroscopy with selective near- and midinfrared photo...
Using time- and angle-resolved photoemission spectroscopy with selective near- and midinfrared photo...
There is a growing interest in the mode-by-mode understanding of electron and phonon transport for i...
The equilibration of electronic carriers in metals after excitation by an ultrashort laser pulse pro...
: The coupling of the electron system to lattice vibrations and their time-dependent control and det...
The coupling of excitons with atomic vibrations plays a pivotal role on the nonequilibrium optical p...
Using 28-fs, 800-nm laser pulses we have coherently excited and subsequently probed, with time-depe...