Imaging charge, spin, and energy flow in materials is a current grand challenge that is relevant to a host of nanoenhanced systems, including thermoelectric, photovoltaic, electronic, and spin devices. Ultrafast coherent x-ray sources enable functional imaging on nanometer length and femtosecond timescales particularly when combined with advances in coherent imaging techniques. Here, we combine ptychographic coherent diffractive imaging with an extreme ultraviolet high harmonic light source to directly visualize the complex thermal and acoustic response of an individual nanoscale antenna after impulsive heating by a femtosecond laser. We directly image the deformations induced in both the nickel tapered nanoantenna and the silicon substrate...
An understanding of nanoscale energy transport and acoustic response is important for applications o...
There is growing interest and technological opportunity in nanomechanics and the fundamentals of nan...
Key insights into the behavior of materials can be gained by observing their structure as they under...
We demonstrate the first stroboscopic full-field EUV nanoscope using high harmonics. We image the pr...
Using a tabletop coherent extreme ultraviolet source, we extend current nanoscale metrology capabili...
We demonstrate submicron resolution imaging using picosecond acoustic phonon pulses. High-frequency ...
We report the first stroboscopic full-field EUV microscope using high harmonics. Specifically, we de...
This thesis discusses methods for high-resolution static and stroboscopic microscopy using tabletop ...
We report the first dynamic (i.e. stroboscopic), full field, tabletop extreme ultraviolet microscope...
We extend optical nanometrology capabilities to smaller dimensions by using tabletop coherent extrem...
Coherent diffractive imaging is unique, being the only route for achieving high spatial resolution i...
International audienceWe demonstrate a method to image an object using a self-probing approach based...
An understanding of nanoscale energy transport and acoustic response is important for applications o...
There is growing interest and technological opportunity in nanomechanics and the fundamentals of nan...
Key insights into the behavior of materials can be gained by observing their structure as they under...
We demonstrate the first stroboscopic full-field EUV nanoscope using high harmonics. We image the pr...
Using a tabletop coherent extreme ultraviolet source, we extend current nanoscale metrology capabili...
We demonstrate submicron resolution imaging using picosecond acoustic phonon pulses. High-frequency ...
We report the first stroboscopic full-field EUV microscope using high harmonics. Specifically, we de...
This thesis discusses methods for high-resolution static and stroboscopic microscopy using tabletop ...
We report the first dynamic (i.e. stroboscopic), full field, tabletop extreme ultraviolet microscope...
We extend optical nanometrology capabilities to smaller dimensions by using tabletop coherent extrem...
Coherent diffractive imaging is unique, being the only route for achieving high spatial resolution i...
International audienceWe demonstrate a method to image an object using a self-probing approach based...
An understanding of nanoscale energy transport and acoustic response is important for applications o...
There is growing interest and technological opportunity in nanomechanics and the fundamentals of nan...
Key insights into the behavior of materials can be gained by observing their structure as they under...