We use bright-field imaging in an ultrafast electron microscope to spatiotemporally map the evolution of photoexcited coherent strain waves in a single, micrometer-size flake of MoS<sub>2</sub>. Following in situ femtosecond photoexcitation, we observe individual wave trains emerge from discrete nanoscale morphological features and propagate in-plane along specific wave vectors at approximately the speed of sound (7 nm/ps). Over the span of several hundred picoseconds, the 50 GHz wave trains (20 ps periods) are observed to undergo phonon–phonon scattering and wave-train interference, resulting in a transition to larger-scale, incoherent structural dynamics. This incoherent motion further evolves into coherent nanomechanical oscillations ove...
This research aims at experimentally monitoring nonlinear generation and propagation of picosecond c...
In four-dimensional (4D) ultrafast electron microscopy (UEM), timed-pulse electron imaging and selec...
Abstract. Recent experiments on propagation of picosecond acoustic wave packets in condensed matter ...
The control of optically driven high-frequency strain waves in nanostructured systems is an essentia...
Optically excited nanostructures provide a versatile platform for the generation of confined nanopho...
Two-dimensional materials are subject to intrinsic and dynamic rippling that modulates their optoele...
Understanding the collaborative behaviors of the excitons and phonons that result from light-matter ...
International audienceCoherent optical excitations in two-dimensional (2D) materials, 2D polaritons,...
Two-dimensional materials are subject to intrinsic and dynamic rippling that modulates their optoele...
In recent years, pressure pulses of very short (picosecond) time duration have found wide applicatio...
We demonstrate submicron resolution imaging using picosecond acoustic phonon pulses. High-frequency ...
The development of ultrafast time-resolved techniques in the last decades allowed the direct observa...
Femtosecond optical pump–probe spectroscopy is employed to elucidate the band-selective ultrafast ca...
Here, we demonstrate ultrafast scanning electron microscopy (SEM) for making ultrafast movies of mec...
Ultrafast measurement technology provides essential contributions to our understanding of the proper...
This research aims at experimentally monitoring nonlinear generation and propagation of picosecond c...
In four-dimensional (4D) ultrafast electron microscopy (UEM), timed-pulse electron imaging and selec...
Abstract. Recent experiments on propagation of picosecond acoustic wave packets in condensed matter ...
The control of optically driven high-frequency strain waves in nanostructured systems is an essentia...
Optically excited nanostructures provide a versatile platform for the generation of confined nanopho...
Two-dimensional materials are subject to intrinsic and dynamic rippling that modulates their optoele...
Understanding the collaborative behaviors of the excitons and phonons that result from light-matter ...
International audienceCoherent optical excitations in two-dimensional (2D) materials, 2D polaritons,...
Two-dimensional materials are subject to intrinsic and dynamic rippling that modulates their optoele...
In recent years, pressure pulses of very short (picosecond) time duration have found wide applicatio...
We demonstrate submicron resolution imaging using picosecond acoustic phonon pulses. High-frequency ...
The development of ultrafast time-resolved techniques in the last decades allowed the direct observa...
Femtosecond optical pump–probe spectroscopy is employed to elucidate the band-selective ultrafast ca...
Here, we demonstrate ultrafast scanning electron microscopy (SEM) for making ultrafast movies of mec...
Ultrafast measurement technology provides essential contributions to our understanding of the proper...
This research aims at experimentally monitoring nonlinear generation and propagation of picosecond c...
In four-dimensional (4D) ultrafast electron microscopy (UEM), timed-pulse electron imaging and selec...
Abstract. Recent experiments on propagation of picosecond acoustic wave packets in condensed matter ...