Current X-ray absorption spectroscopy (XAS) data-analysis of ordered and disordered systems is based on a peak decomposition of the n-body distribution functions. The limitation of this approach can be particularly severe for the purpose of modeling the local geometry in liquid and amorphous systems. We have developed a successful method for quantitative analysis of highly disordered structures using the Reverse Monte Carlo (RMC) refinement that can be applied simultaneously to diffraction and XAS data, allowing the construction of realistic tridimensional models. Here we present the results of the application of the method to gaseous Br-2 and to liquid Cu. The method incorporates all of the advances related to the application of advanced m...
A general procedure which computes X-ray absorption near-edge structure (XANES) spectra starting fro...
Water is an important substance. It is part of us, of our environment, and is a fundamental prerequi...
Although X-ray diffraction is still mainly used to determine crystal structures, the demand for an u...
Current X-ray absorption spectroscopy (XAS) data-analysis of ordered and disordered systems is based...
Modern extended X-ray absorption fine structure (EXAFS) analysis is based on multiple-scattering cal...
We have developed a successful method for structural refinement, based on the reverse Monte Carlo (R...
X-ray Absorption Spectroscopy (XAS) is known to be an ideal technique for investigating matter lacki...
The Reverse Monte Carlo (RMC) algorithm for structure refinement has been applied to x-ray absorptio...
The general theoretical framework underlying the GNXAS multiple-scattering (MS) data-analysis method...
International audienceUseful information about the average local geometry in simple liquids can be o...
The practical and theoretical aspects of the GNXAS method for multiple-scattering extended x-ray-abs...
Over the past two decades x-ray absorption spectroscopy has proven to be a valuable tool for the stu...
A general procedure which computes X-ray absorption near-edge structure (XANES) spectra starting fro...
Water is an important substance. It is part of us, of our environment, and is a fundamental prerequi...
Although X-ray diffraction is still mainly used to determine crystal structures, the demand for an u...
Current X-ray absorption spectroscopy (XAS) data-analysis of ordered and disordered systems is based...
Modern extended X-ray absorption fine structure (EXAFS) analysis is based on multiple-scattering cal...
We have developed a successful method for structural refinement, based on the reverse Monte Carlo (R...
X-ray Absorption Spectroscopy (XAS) is known to be an ideal technique for investigating matter lacki...
The Reverse Monte Carlo (RMC) algorithm for structure refinement has been applied to x-ray absorptio...
The general theoretical framework underlying the GNXAS multiple-scattering (MS) data-analysis method...
International audienceUseful information about the average local geometry in simple liquids can be o...
The practical and theoretical aspects of the GNXAS method for multiple-scattering extended x-ray-abs...
Over the past two decades x-ray absorption spectroscopy has proven to be a valuable tool for the stu...
A general procedure which computes X-ray absorption near-edge structure (XANES) spectra starting fro...
Water is an important substance. It is part of us, of our environment, and is a fundamental prerequi...
Although X-ray diffraction is still mainly used to determine crystal structures, the demand for an u...