The ability to measure interparticle stress fields is crucial for a number of scientific fields. Detailed knowledge of such interaction stresses can shed light on a number of phenomena such as the fracture mechanics of polycrystalline materials, the mechanics of granular media, and crystallization process of microspheres and nanospheres. In this letter we report the use of a new micro-Raman-spectroscopy-based technique to measure directly the intergranular stress fields in polycrystalline systems. Using Raman active tracers (50Å graphite crystals) dispersed in the system, the technique was shown to be applicable for non-Raman-active polycrystalline systems (e.g. metals). For the first time, stresses within and around individual grains has b...
To better understand the properties of polycrystals at a microscopic scale during cyclic mechanical ...
Inhomogeneous deformation fields arising from the grain-grain interactions in polycrystalline materi...
Confocal micro-Raman spectroscopy allows for spatially resolved measurements of the phonon energy in...
The ability to measure interparticle stress fields is crucial for a number of scientific fields. Det...
The recent evolution of micro-Raman spectroscopy as micro-mechanical experimental technique had a pr...
The recent evolution of micro-Raman spectroscopy as micromechanical experimental technique had a pro...
Polarized Raman spectroscopy was applied to garnet hosts which exhibit anomalous birefringence aroun...
From aircraft to electronic devices, and even in Formula One cars, stress is the main cause of degra...
The authors used micro-Raman spectroscopy to monitor the ferroelectric (FE) to antiferroelectric (AF...
International audienceThe overall plastic behavior of polycrystalline materials strongly depends on ...
The measurement of stress in the SiC particles during crack propagation was investigated by micro ra...
Understanding the conditions that drive phenomena like fatigue crack initiation in polycrystalline s...
To better understand the properties of polycrystals at a microscopic scale during cyclic mechanical ...
Inhomogeneous deformation fields arising from the grain-grain interactions in polycrystalline materi...
Confocal micro-Raman spectroscopy allows for spatially resolved measurements of the phonon energy in...
The ability to measure interparticle stress fields is crucial for a number of scientific fields. Det...
The recent evolution of micro-Raman spectroscopy as micro-mechanical experimental technique had a pr...
The recent evolution of micro-Raman spectroscopy as micromechanical experimental technique had a pro...
Polarized Raman spectroscopy was applied to garnet hosts which exhibit anomalous birefringence aroun...
From aircraft to electronic devices, and even in Formula One cars, stress is the main cause of degra...
The authors used micro-Raman spectroscopy to monitor the ferroelectric (FE) to antiferroelectric (AF...
International audienceThe overall plastic behavior of polycrystalline materials strongly depends on ...
The measurement of stress in the SiC particles during crack propagation was investigated by micro ra...
Understanding the conditions that drive phenomena like fatigue crack initiation in polycrystalline s...
To better understand the properties of polycrystals at a microscopic scale during cyclic mechanical ...
Inhomogeneous deformation fields arising from the grain-grain interactions in polycrystalline materi...
Confocal micro-Raman spectroscopy allows for spatially resolved measurements of the phonon energy in...