Advances in source monochromation in transmission electron microscopy have opened up new possibilities for investigations of condensed matter using the phonon-loss sector of the energy-loss spectrum. Here, we explore the spatial variations of the spectrum as an atomic-sized probe is scanned across a thin flake of hexagonal boron nitride. We demonstrate that phonon spectral mapping of atomic structure is possible. These results are consistent with a model for the quantum excitation of phonons and confirm that Z-contrast imaging is based on inelastic scattering associated with phonon excitation
Phonon scattering at grain boundaries (GBs) is significant in controlling the nanoscale device therm...
Atomic resolution scanning transmission electron microscopy, based on counting fast electrons that h...
Phonon scattering at grain boundaries (GBs) is significant in controlling the nanoscale device therm...
Advances in source monochromation in transmission electron microscopy have opened up new possibiliti...
Advances in source monochromation in transmission electron microscopy have opened up new possibiliti...
Advances in source monochromation in transmission electron microscopy have opened up new possibiliti...
It was recently shown that phonon spectral mapping of atomic structure is possible in scanning trans...
Recent developments in experiments with vibrational electron energy loss spectroscopy (EELS) have re...
A new generation of beam monochromators has recently pushed the energy resolution of (scanning) tran...
A new generation of beam monochromators has recently pushed the energy resolution of (scanning) tran...
We provide a theoretical framework for the prediction and interpretation of momentum-dependent phono...
Vibrational modes affect fundamental physical properties such as the conduction of sound and heat an...
We provide a theoretical framework for the prediction and interpretation of momentum-dependent phono...
We provide a theoretical framework for the prediction and interpretation of momentum-dependent phono...
Vibrational modes affect fundamental physical properties such as the conduction of sound and heat an...
Phonon scattering at grain boundaries (GBs) is significant in controlling the nanoscale device therm...
Atomic resolution scanning transmission electron microscopy, based on counting fast electrons that h...
Phonon scattering at grain boundaries (GBs) is significant in controlling the nanoscale device therm...
Advances in source monochromation in transmission electron microscopy have opened up new possibiliti...
Advances in source monochromation in transmission electron microscopy have opened up new possibiliti...
Advances in source monochromation in transmission electron microscopy have opened up new possibiliti...
It was recently shown that phonon spectral mapping of atomic structure is possible in scanning trans...
Recent developments in experiments with vibrational electron energy loss spectroscopy (EELS) have re...
A new generation of beam monochromators has recently pushed the energy resolution of (scanning) tran...
A new generation of beam monochromators has recently pushed the energy resolution of (scanning) tran...
We provide a theoretical framework for the prediction and interpretation of momentum-dependent phono...
Vibrational modes affect fundamental physical properties such as the conduction of sound and heat an...
We provide a theoretical framework for the prediction and interpretation of momentum-dependent phono...
We provide a theoretical framework for the prediction and interpretation of momentum-dependent phono...
Vibrational modes affect fundamental physical properties such as the conduction of sound and heat an...
Phonon scattering at grain boundaries (GBs) is significant in controlling the nanoscale device therm...
Atomic resolution scanning transmission electron microscopy, based on counting fast electrons that h...
Phonon scattering at grain boundaries (GBs) is significant in controlling the nanoscale device therm...