International audienceIn the last decade, transmission X-ray microscopes (TXMs) have come into operation in most of the synchrotrons worldwide. They have proven to be outstanding tools for non-invasive ex and in situ 3D characterization of materials at the nanoscale across varying range of scientific applications. However, their spatial resolution has not improved in many years, while newly developed functional materials and microdevices with enhanced performances exhibit nanostructures always finer. Here, optomechanical breakthroughs leading to fast 3D tomographic acquisitions (85 min) with sub-10 nm spatial resolution, narrowing the gap between X-ray and electron microscopy, are reported. These new achievements are first validated with 3D...
Hard x-ray nanoimaging enables structural investigations of new materials for many applications. For...
X-rays allow to non-destructively investigate biological, chemical or physical processes at the nano...
X-rays allow to non-destructively investigate biological, chemical or physical processes at the nano...
International audienceX-ray computed tomography (CT) is a very powerful technique that provides nond...
International audienceX-ray computed tomography (CT) is a very powerful technique that provides nond...
In this study, high-energy x-ray nanotomography (nano-computed tomography, nano-CT) based on full-fi...
The performance of many advanced materials is determined by the arrangement of their nanostructure w...
Beamline 11.3.1 at the Advanced Light Source is a tender/hard (6-17 keV) x-ray bend magnet beam...
X ray imaging offers a large penetration depth, good element contrast and short wavelength. This un...
Abstract The fabrication of devices to focus hard x-rays is one of the most difficult-and important-...
Beamline 11.3.1 at the Advanced Light Source is a tender/hard (6-17 keV) x-ray bend magnet beamline ...
To investigate the performance of three-dimensional (3D) nanostructures, it is vital to study their ...
X-ray nanotomography is used to analyze materials on the sub-micrometer scale. Many soft biological ...
X-ray nanotomography is used to analyze materials on the sub-micrometer scale. Many soft biological ...
Hard x-ray nanoimaging enables structural investigations of new materials for many applications. For...
Hard x-ray nanoimaging enables structural investigations of new materials for many applications. For...
X-rays allow to non-destructively investigate biological, chemical or physical processes at the nano...
X-rays allow to non-destructively investigate biological, chemical or physical processes at the nano...
International audienceX-ray computed tomography (CT) is a very powerful technique that provides nond...
International audienceX-ray computed tomography (CT) is a very powerful technique that provides nond...
In this study, high-energy x-ray nanotomography (nano-computed tomography, nano-CT) based on full-fi...
The performance of many advanced materials is determined by the arrangement of their nanostructure w...
Beamline 11.3.1 at the Advanced Light Source is a tender/hard (6-17 keV) x-ray bend magnet beam...
X ray imaging offers a large penetration depth, good element contrast and short wavelength. This un...
Abstract The fabrication of devices to focus hard x-rays is one of the most difficult-and important-...
Beamline 11.3.1 at the Advanced Light Source is a tender/hard (6-17 keV) x-ray bend magnet beamline ...
To investigate the performance of three-dimensional (3D) nanostructures, it is vital to study their ...
X-ray nanotomography is used to analyze materials on the sub-micrometer scale. Many soft biological ...
X-ray nanotomography is used to analyze materials on the sub-micrometer scale. Many soft biological ...
Hard x-ray nanoimaging enables structural investigations of new materials for many applications. For...
Hard x-ray nanoimaging enables structural investigations of new materials for many applications. For...
X-rays allow to non-destructively investigate biological, chemical or physical processes at the nano...
X-rays allow to non-destructively investigate biological, chemical or physical processes at the nano...