Extended X-ray absorption fine structure
subset of X-ray absorption spectroscopy

Extended X-ray absorption fine structure (EXAFS) is currently the name of a technique used to study the local atomic structure of materials around specific chemical species. Due to its intrinsic short-range sensitivity (less than 1 nm around photoabsorbing atoms) it is regarded to be highly complementary to more standard x-ray diffraction techniques, and particularly useful for materials under non-standard conditions.
Extended X-ray absorption fine structure (EXAFS), along with X-ray absorption near edge structure (XANES), is a subset of X-ray absorption spectroscopy (XAS). Like other absorption spectroscopies, XAS techniques follow Beer's law. The X-ray absorption coefficient of a material as a function of energy is obtained by directing X-rays of a narrow energy range at a sample, while recording the incident and transmitted x-ray intensity, as the incident x-ray energy is incremented.
When the incident x-ray energy matches the binding energy of an electron of an atom within the sample, the number of x-rays absorbed by the sample increases dramatically, causing a drop in the transmitted x-ray intensity. This results in an absorption edge. Every element has a set of unique absorption edges corresponding to different binding energies of its electrons, giving XAS element selectivity. XAS spectra are most often collected at synchrotrons because the high intensity of synchrotron X-ray sources allows the concentration of the absorbing element to reach as low as a few parts per million. Absorption would be undetectable if the source were too weak.
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