The nature of local point symmetry in simple monoatomic liquids has been a fundamental open question for almost 40 years of computational and experimental studies. We present original results of local ordering in different monoatomic liquids obtained by x-ray absorption spectroscopy (XAS), exploiting its high sensitivity to short-range ordering. We used Reverse Monte Carlo (RMC) analysis (RMC-GNXAS package) for obtaining structural models compatible with XAS experimental data (and diffraction techniques for long-range ordering). Pair, bond-angle distributions and suitable indicators for point symmetry are calculated for different liquid metals
We explore the different local symmetries in colloidal glasses beyond the standard pair correlation ...
Current X-ray absorption spectroscopy (XAS) data-analysis of ordered and disordered systems is based...
In situ X-ray absorption spectroscopy (XAS) studies on a number of previously poorly characterised h...
The nature of local point symmetry in simple monoatomic liquids has been a fundamental open question...
International audienceUseful information about the average local geometry in simple liquids can be o...
X-ray absorption spectroscopy (XAS) is a powerful technique to investigate the short-range order aro...
The local structure of simple liquids is significantly different from that of corresponding crystall...
Recent experimental advances in high-temperature X-ray absorption spectroscopy (XAS) have stimulated...
Presence and significance of fivefold configurations in liquid metals are investigated by combining ...
International audienceRecent results obtained using the x-ray absorption spectroscopy (XAS) on liqui...
Recent advances in data-analysis and instrumentation allowed us to perform x-ray absorption (YCAS) s...
It has been conjectured that the local structure of simple mono-atomic liquids is mainly of ve-fold ...
The higher order correlation functions of local atomic distribution at metal ion sites in acqueous s...
The Reverse Monte Carlo (RMC) algorithm for structure refinement has been applied to x-ray absorptio...
High energy X-ray diffraction can be combined with containerless techniques to provide information o...
We explore the different local symmetries in colloidal glasses beyond the standard pair correlation ...
Current X-ray absorption spectroscopy (XAS) data-analysis of ordered and disordered systems is based...
In situ X-ray absorption spectroscopy (XAS) studies on a number of previously poorly characterised h...
The nature of local point symmetry in simple monoatomic liquids has been a fundamental open question...
International audienceUseful information about the average local geometry in simple liquids can be o...
X-ray absorption spectroscopy (XAS) is a powerful technique to investigate the short-range order aro...
The local structure of simple liquids is significantly different from that of corresponding crystall...
Recent experimental advances in high-temperature X-ray absorption spectroscopy (XAS) have stimulated...
Presence and significance of fivefold configurations in liquid metals are investigated by combining ...
International audienceRecent results obtained using the x-ray absorption spectroscopy (XAS) on liqui...
Recent advances in data-analysis and instrumentation allowed us to perform x-ray absorption (YCAS) s...
It has been conjectured that the local structure of simple mono-atomic liquids is mainly of ve-fold ...
The higher order correlation functions of local atomic distribution at metal ion sites in acqueous s...
The Reverse Monte Carlo (RMC) algorithm for structure refinement has been applied to x-ray absorptio...
High energy X-ray diffraction can be combined with containerless techniques to provide information o...
We explore the different local symmetries in colloidal glasses beyond the standard pair correlation ...
Current X-ray absorption spectroscopy (XAS) data-analysis of ordered and disordered systems is based...
In situ X-ray absorption spectroscopy (XAS) studies on a number of previously poorly characterised h...