We present a table-top coherent diffractive imaging (CDI) experiment based on high-order harmonics generated at 18 nm by a high average power femtosecond fiber laser system. The high photon flux, narrow spectral bandwidth, and high degree of spatial coherence allow for ultrahigh subwavelength resolution imaging at a high numerical aperture. Our experiments demonstrate a half-pitch resolution of 15 nm, close to the actual Abbe limit of 12 nm, which is the highest resolution achieved from any table-top extreme ultraviolet (XUV) or x-ray microscope. In addition, sub-30 nm resolution was achieved with only 3 s of integration time, bringing live diffractive imaging and three-dimensional tomography on the nanoscale one step closer to reality. The...
Coherent diffraction imaging (CDI) in the extreme ultraviolet has become an important tool for nanos...
Today, coherent imaging techniques provide the highest resolution in the extreme ultraviolet (XUV) a...
Imaging using sources in the XUV and X-ray spectral range combines high resolution with longer penet...
Imaging using sources in the XUV and X-ray spectral range combines high resolution with longer penet...
We demonstrate a resolution of 45 nm with a sample size down to 3 μm × 3R...
Coherent diffractive imaging is unique, being the only route for achieving high spatial resolution i...
Coherent diffraction imaging (CDI) at wavelengths in the extreme ultraviolet range has become an imp...
This thesis discusses methods for high-resolution static and stroboscopic microscopy using tabletop ...
Coherent Diffraction Imaging is a technique to study matter with nanometer-scale spatial resolution ...
Coherent Diffraction Imaging is a technique to study matter with nanometer-scale spatial resolution ...
Coherent Diffraction Imaging is a technique to study matter with nanometer-scale spatial resolution ...
This talk will report on recent advances in table-top high-harmonic XUV sources and applications inc...
A new scientific frontier exists at the intersection of the nanoscale and the ultrafast. In order to...
International audienceCoherent x-ray diffractive imaging is a powerful method for studies on nonperi...
Coherent diffractive imaging (CDI) is a lensless microscopy technique in which the structure of a sp...
Coherent diffraction imaging (CDI) in the extreme ultraviolet has become an important tool for nanos...
Today, coherent imaging techniques provide the highest resolution in the extreme ultraviolet (XUV) a...
Imaging using sources in the XUV and X-ray spectral range combines high resolution with longer penet...
Imaging using sources in the XUV and X-ray spectral range combines high resolution with longer penet...
We demonstrate a resolution of 45 nm with a sample size down to 3 μm × 3R...
Coherent diffractive imaging is unique, being the only route for achieving high spatial resolution i...
Coherent diffraction imaging (CDI) at wavelengths in the extreme ultraviolet range has become an imp...
This thesis discusses methods for high-resolution static and stroboscopic microscopy using tabletop ...
Coherent Diffraction Imaging is a technique to study matter with nanometer-scale spatial resolution ...
Coherent Diffraction Imaging is a technique to study matter with nanometer-scale spatial resolution ...
Coherent Diffraction Imaging is a technique to study matter with nanometer-scale spatial resolution ...
This talk will report on recent advances in table-top high-harmonic XUV sources and applications inc...
A new scientific frontier exists at the intersection of the nanoscale and the ultrafast. In order to...
International audienceCoherent x-ray diffractive imaging is a powerful method for studies on nonperi...
Coherent diffractive imaging (CDI) is a lensless microscopy technique in which the structure of a sp...
Coherent diffraction imaging (CDI) in the extreme ultraviolet has become an important tool for nanos...
Today, coherent imaging techniques provide the highest resolution in the extreme ultraviolet (XUV) a...
Imaging using sources in the XUV and X-ray spectral range combines high resolution with longer penet...