In solids, the response of the lattice to photo-excitation is often described by the inertial evolution on an impulsively modified potential energy surface which leads to coherent motion. However, it remains unknown if vibrational coherence is sustained through a phase transition, during which coupling between modes can be strong and may lead to rapid loss of coherence. Here we use coherent phonon spectroscopy to track lattice coherence in the structural phase transition of V$_2$O$_3$. In both the low and high symmetry phases unique coherent phonon modes are generated at low fluence. However, coherence is lost when driving between the low and high symmetry phases. Our results suggest non-inertial dynamics dominate during phase transition du...
We present a detailed study of the photoinduced insulator-metal transition in VO2 with broadband tim...
Active optical control over matter is desirable in many scientific disciplines, with prominent examp...
CONSPECTUS: Driving phase changes by selective optical excitation of specific vibrational modes in m...
In solids, the response of the lattice to photoexcitation is often described by the inertial evoluti...
Photoinduced phase transition (PIPT) is always treated as a coherent process, but ultrafast disorder...
The study of photoexcited strongly correlated materials is attracting growing interest since their r...
Time-resolved x-ray scattering can be used to investigate the dynamics of materials during the switc...
The study of photoexcited strongly correlated materials is attracting growing interest since their r...
Nonlinear processes involving frequency-mixing of light fields set the basis for ultrafast coherent ...
The phase transition of VO2 from a monoclinic insulator to a rutile metal, which occurs thermally at...
We show that in YVO₃ additional hard phonons gradually become zone center infrared active below ∼210...
We report on displacive excitation of large amplitude coherent lattice motions in TiO2 under resonan...
Photoinduced phase transition (PIPT) is always treated as a coherent process, but ultrafast disorder...
13siAddressing the role of quantum coherence in the interplay between the different matter constitue...
Ultrafast photoexcitation can induce a nonequilibrium dynamic with electron-lattice interaction, off...
We present a detailed study of the photoinduced insulator-metal transition in VO2 with broadband tim...
Active optical control over matter is desirable in many scientific disciplines, with prominent examp...
CONSPECTUS: Driving phase changes by selective optical excitation of specific vibrational modes in m...
In solids, the response of the lattice to photoexcitation is often described by the inertial evoluti...
Photoinduced phase transition (PIPT) is always treated as a coherent process, but ultrafast disorder...
The study of photoexcited strongly correlated materials is attracting growing interest since their r...
Time-resolved x-ray scattering can be used to investigate the dynamics of materials during the switc...
The study of photoexcited strongly correlated materials is attracting growing interest since their r...
Nonlinear processes involving frequency-mixing of light fields set the basis for ultrafast coherent ...
The phase transition of VO2 from a monoclinic insulator to a rutile metal, which occurs thermally at...
We show that in YVO₃ additional hard phonons gradually become zone center infrared active below ∼210...
We report on displacive excitation of large amplitude coherent lattice motions in TiO2 under resonan...
Photoinduced phase transition (PIPT) is always treated as a coherent process, but ultrafast disorder...
13siAddressing the role of quantum coherence in the interplay between the different matter constitue...
Ultrafast photoexcitation can induce a nonequilibrium dynamic with electron-lattice interaction, off...
We present a detailed study of the photoinduced insulator-metal transition in VO2 with broadband tim...
Active optical control over matter is desirable in many scientific disciplines, with prominent examp...
CONSPECTUS: Driving phase changes by selective optical excitation of specific vibrational modes in m...