We demonstrate a method for obtaining increased spatial resolution and specificity in nanoscale chemical composition maps through the use of full refractive reference spectra in soft x-ray spectro-microscopy. Using soft x-ray ptychography, we measure both the absorption and refraction of x-rays through pristine reference materials as a function of photon energy and use these reference spectra as the basis for decomposing spatially resolved spectra from a heterogeneous sample, thereby quantifying the composition at high resolution. While conventional instruments are limited to absorption contrast, our novel refraction based method takes advantage of the strongly energy dependent scattering cross-section and can see nearly five-fold improved ...
AbstractNear Edge X-ray Absorption Fine Structure (NEXAFS) spectromicroscopy, resonant scattering an...
The high brilliance of synchrotron radiation has allowed us to combine microscopy with X-ray analyti...
Ptychography is a form of scanning diffractive imaging that can successfully retrieve the modulus an...
We demonstrate a method for obtaining increased spatial resolution and specificity in nanoscale chem...
X-ray microscopy is powerful in that it can probe large volumes of material at high spatial resoluti...
Monitoring the chemical state of catalysts on a large range of length scales down to the nanometer s...
We introduce a new technique using resonant soft x-ray scattering for characterizing heterogeneous ...
A method is described whereby a sequence of X-ray images at closely spaced photon energies is acquir...
X-rays offer indispensable opportunities for science, medicine, and technology due to a large variet...
For the detailed investigation of biological, chemical or physical processes on the nano scale, high...
Soft X ray spectroscopy is invaluable for gaining insights into quantum materials. However, it is ty...
The analysis of chemical states and morphology in nanomaterials is central to many areas of science....
Previous very successful soft X-ray microscopy tomography experiments [1-3] have been performed at a...
Isolating compositional information in biological X-ray imaging can be problematic as such informati...
X-ray imaging traces its roots back to the discovery of x-rays by Ro ̈ntgen in 1901, in the form of ...
AbstractNear Edge X-ray Absorption Fine Structure (NEXAFS) spectromicroscopy, resonant scattering an...
The high brilliance of synchrotron radiation has allowed us to combine microscopy with X-ray analyti...
Ptychography is a form of scanning diffractive imaging that can successfully retrieve the modulus an...
We demonstrate a method for obtaining increased spatial resolution and specificity in nanoscale chem...
X-ray microscopy is powerful in that it can probe large volumes of material at high spatial resoluti...
Monitoring the chemical state of catalysts on a large range of length scales down to the nanometer s...
We introduce a new technique using resonant soft x-ray scattering for characterizing heterogeneous ...
A method is described whereby a sequence of X-ray images at closely spaced photon energies is acquir...
X-rays offer indispensable opportunities for science, medicine, and technology due to a large variet...
For the detailed investigation of biological, chemical or physical processes on the nano scale, high...
Soft X ray spectroscopy is invaluable for gaining insights into quantum materials. However, it is ty...
The analysis of chemical states and morphology in nanomaterials is central to many areas of science....
Previous very successful soft X-ray microscopy tomography experiments [1-3] have been performed at a...
Isolating compositional information in biological X-ray imaging can be problematic as such informati...
X-ray imaging traces its roots back to the discovery of x-rays by Ro ̈ntgen in 1901, in the form of ...
AbstractNear Edge X-ray Absorption Fine Structure (NEXAFS) spectromicroscopy, resonant scattering an...
The high brilliance of synchrotron radiation has allowed us to combine microscopy with X-ray analyti...
Ptychography is a form of scanning diffractive imaging that can successfully retrieve the modulus an...