peer reviewedWe report the ultrafast dynamics of the 47.4 THz coherent phonons of graphite interacting with a photoinduced nonequilibrium electron-hole plasma. Unlike conventional materials, upon photoexcitation the phonon frequency of graphite upshifts, and within a few picoseconds relaxes to the stationary value. Our first-principles density functional calculations demonstrate that the phonon stiffening stems from the light-induced decoupling of the nonadiabatic electron-phonon interaction by creating a nonequilibrium electron-hole plasma. Time-resolved vibrational spectroscopy provides a window on the ultrafast nonquilibrium electron dynamics
Ultrafast spectroscopies have become an important tool for elucidating the microscopic description a...
This work focuses on the ultrafast dynamics of electrons and phonons in graphitic materials. In part...
Femtosecond time-resolved photoemission of photoexcited electrons in highly oriented pyrolytic graph...
We report the ultrafast dynamics of the 47.4 THz coherent phonons of graphite interacting with a pho...
Nonequilibrium optical phonons are generated in graphite following the excitation of electron-hole p...
Nonequilibrium optical phonons are generated in graphite following the excitation of electron-hole p...
We show that ultrafast electron diffuse (inelastic) scattering provides a detailed, momentum-resolve...
Extended abstract of a paper presented at Microscopy and Microanalysis 2010 in Portland, Oregon, USA...
We investigated phonon-phonon interactions in photoexcited single-crystalline graphite by ultrafast ...
Motion of ions and their interplay with bonded charge govern the functionality of materials. The sc...
Nonequilibrium optical phonons are generated in graphite following the excitation of electron-hole p...
Motion of ions and their interplay with bonded charge govern the functionality of materials. The sc...
Doctor of PhilosophyDepartment of PhysicsItzhak Ben-ItzhakPatrick RichardThis work focuses on the ul...
Doctor of PhilosophyDepartment of PhysicsItzhak Ben-ItzhakPatrick RichardThis work focuses on the ul...
Electron-phonon coupling directly determines the stability of cooperative order in solids, including...
Ultrafast spectroscopies have become an important tool for elucidating the microscopic description a...
This work focuses on the ultrafast dynamics of electrons and phonons in graphitic materials. In part...
Femtosecond time-resolved photoemission of photoexcited electrons in highly oriented pyrolytic graph...
We report the ultrafast dynamics of the 47.4 THz coherent phonons of graphite interacting with a pho...
Nonequilibrium optical phonons are generated in graphite following the excitation of electron-hole p...
Nonequilibrium optical phonons are generated in graphite following the excitation of electron-hole p...
We show that ultrafast electron diffuse (inelastic) scattering provides a detailed, momentum-resolve...
Extended abstract of a paper presented at Microscopy and Microanalysis 2010 in Portland, Oregon, USA...
We investigated phonon-phonon interactions in photoexcited single-crystalline graphite by ultrafast ...
Motion of ions and their interplay with bonded charge govern the functionality of materials. The sc...
Nonequilibrium optical phonons are generated in graphite following the excitation of electron-hole p...
Motion of ions and their interplay with bonded charge govern the functionality of materials. The sc...
Doctor of PhilosophyDepartment of PhysicsItzhak Ben-ItzhakPatrick RichardThis work focuses on the ul...
Doctor of PhilosophyDepartment of PhysicsItzhak Ben-ItzhakPatrick RichardThis work focuses on the ul...
Electron-phonon coupling directly determines the stability of cooperative order in solids, including...
Ultrafast spectroscopies have become an important tool for elucidating the microscopic description a...
This work focuses on the ultrafast dynamics of electrons and phonons in graphitic materials. In part...
Femtosecond time-resolved photoemission of photoexcited electrons in highly oriented pyrolytic graph...