Next-generation nano- and quantum devices have increasingly complex 3D structure. As the dimensions of these devices shrink to the nanoscale, their performance is often governed by interface quality or precise chemical or dopant composition. Here, we present the first phase-sensitive extreme ultraviolet imaging reflectometer. It combines the excellent phase stability of coherent high-harmonic sources, the unique chemical sensitivity of extreme ultraviolet reflectometry, and state-of-the-art ptychography imaging algorithms. This tabletop microscope can nondestructively probe surface topography, layer thicknesses, and interface quality, as well as dopant concentrations and profiles. High-fidelity imaging was achieved by implementing variable-...
With the aim of improving imaging using table-top extreme ultraviolet sources, we demonstrate cohere...
We demonstrate non-invasive, high-resolution non-destructive reflection mode imaging of nanostructur...
International audienceWe demonstrate a method to image an object using a self-probing approach based...
AbstractScanning electron microscopy and atomic force microscopy are well-established techniques for...
The goal of this thesis is to demonstrate non-destructive, high resolution, quantitative imaging wit...
Imaging is a critical tool used across a broad range of applications in science, technology, medicin...
Microscopy with coherent extreme-ultraviolet (EUV) and soft-X-ray radiation is a promising diagnosti...
We use EUV coherent microscopy to obtain high-resolution images of buried interfaces, with chemical ...
This thesis discusses methods for high-resolution static and stroboscopic microscopy using tabletop ...
We demonstrate full-field quantitative ptychographic imaging using tabletop high harmonics to visual...
We present a laboratory beamline dedicated to nanoscale subsurface imaging using extreme ultraviolet...
Visualisation of nano structure is essential for rapidly evolving fields such as lithography,and to ...
Modern nanotechnology is constantly raising demands to quality and purity of thin films and interlay...
With the aim of improving imaging using table-top extreme ultraviolet sources, we demonstrate cohere...
We demonstrate non-invasive, high-resolution non-destructive reflection mode imaging of nanostructur...
International audienceWe demonstrate a method to image an object using a self-probing approach based...
AbstractScanning electron microscopy and atomic force microscopy are well-established techniques for...
The goal of this thesis is to demonstrate non-destructive, high resolution, quantitative imaging wit...
Imaging is a critical tool used across a broad range of applications in science, technology, medicin...
Microscopy with coherent extreme-ultraviolet (EUV) and soft-X-ray radiation is a promising diagnosti...
We use EUV coherent microscopy to obtain high-resolution images of buried interfaces, with chemical ...
This thesis discusses methods for high-resolution static and stroboscopic microscopy using tabletop ...
We demonstrate full-field quantitative ptychographic imaging using tabletop high harmonics to visual...
We present a laboratory beamline dedicated to nanoscale subsurface imaging using extreme ultraviolet...
Visualisation of nano structure is essential for rapidly evolving fields such as lithography,and to ...
Modern nanotechnology is constantly raising demands to quality and purity of thin films and interlay...
With the aim of improving imaging using table-top extreme ultraviolet sources, we demonstrate cohere...
We demonstrate non-invasive, high-resolution non-destructive reflection mode imaging of nanostructur...
International audienceWe demonstrate a method to image an object using a self-probing approach based...