We demonstrate quantitative, chemically specific imaging of buried nanostructures, including oxidation and diffusion reactions at buried interfaces, using nondestructive tabletop extreme ultraviolet (EUV) coherent diffractive imaging (CDI). Copper nanostructures inlaid in SiO2 are coated with 100 nm of aluminum, which is opaque to visible light and thick enough that neither visible microscopy nor atomic force microscopy can image the buried interface. Short wavelength high harmonic beams can penetrate the aluminum layer, yielding high-contrast images of the buried structures. Quantitative analysis shows that the reflected EUV light is extremely sensitive to the formation of multiple oxide layers, as well as interdiffusion of materials occur...
We demonstrate full-field quantitative ptychographic imaging using tabletop high harmonics to visual...
AbstractScanning electron microscopy and atomic force microscopy are well-established techniques for...
We report 3D coherent diffractive imaging (CDI) of Au/Pd core-shell nanoparticles with 6.1 nm spatia...
We use EUV coherent microscopy to obtain high-resolution images of buried interfaces, with chemical ...
We demonstrate non-invasive, high-resolution non-destructive reflection mode imaging of nanostructur...
Imaging is a critical tool used across a broad range of applications in science, technology, medicin...
We image a nanostructured sample through a visibly-opaque 100nm layer of aluminum using lensless Fre...
The use of x-rays to probe matter is an ever increasing popular technique due to their short wavelen...
This thesis discusses methods for high-resolution static and stroboscopic microscopy using tabletop ...
A central challenge for imaging complex systems, such as metal defect structures or whole animals, i...
The challenge of nanometric imaging drives intense efforts in applied sciences and fundamental resea...
We propose a nondestructive technique based on atomic core-level shifts to characterize the interfac...
Using a tabletop coherent extreme ultraviolet source, we extend current nanoscale metrology capabili...
Improved performance of functional nano-scaled devices involve novel materials, more complex structu...
The availability of third-generation synchrotrons and ultimately X-ray free-electron lasers1 is driv...
We demonstrate full-field quantitative ptychographic imaging using tabletop high harmonics to visual...
AbstractScanning electron microscopy and atomic force microscopy are well-established techniques for...
We report 3D coherent diffractive imaging (CDI) of Au/Pd core-shell nanoparticles with 6.1 nm spatia...
We use EUV coherent microscopy to obtain high-resolution images of buried interfaces, with chemical ...
We demonstrate non-invasive, high-resolution non-destructive reflection mode imaging of nanostructur...
Imaging is a critical tool used across a broad range of applications in science, technology, medicin...
We image a nanostructured sample through a visibly-opaque 100nm layer of aluminum using lensless Fre...
The use of x-rays to probe matter is an ever increasing popular technique due to their short wavelen...
This thesis discusses methods for high-resolution static and stroboscopic microscopy using tabletop ...
A central challenge for imaging complex systems, such as metal defect structures or whole animals, i...
The challenge of nanometric imaging drives intense efforts in applied sciences and fundamental resea...
We propose a nondestructive technique based on atomic core-level shifts to characterize the interfac...
Using a tabletop coherent extreme ultraviolet source, we extend current nanoscale metrology capabili...
Improved performance of functional nano-scaled devices involve novel materials, more complex structu...
The availability of third-generation synchrotrons and ultimately X-ray free-electron lasers1 is driv...
We demonstrate full-field quantitative ptychographic imaging using tabletop high harmonics to visual...
AbstractScanning electron microscopy and atomic force microscopy are well-established techniques for...
We report 3D coherent diffractive imaging (CDI) of Au/Pd core-shell nanoparticles with 6.1 nm spatia...