Ptychographic diffractive imaging has the potential for structural determination of materials without the constraints of relatively small, isolated samples required for conventional coherent diffractive imaging. The increased illumination diversity introduced using multiple measurements (overlapped probe positions) also provides higher sensitivity to phase changes in weakly scattering samples. The resolution of a ptychographic reconstruction is ultimately determined by the diffraction limit for the wavelength of the radiation used. However, in practical experiments using electrons either the maximum collection angle of the detector used to record the data or the partial coherence of the source impose lower resolution limits. Nonetheless for...
The microscopic world at the atomic scale seems very remote from our daily lives. Still, we exploit ...
The ability to image light elements in both crystalline and noncrystalline materials at near atomic ...
The ability to image light elements in both crystalline and noncrystalline materials at near atomic ...
Ptychographic diffractive imaging has the potential for structural determination of materials withou...
Recent development in fast pixelated detector technology has allowed a two dimensional diffraction p...
Recent development in fast pixelated detector technology has allowed a two dimensional diffraction p...
Recent development in fast pixelated detector technology has allowed a two dimensional diffraction p...
The paper focuses on the development of electron coherent diffraction imaging in transmission electr...
Imaging the complete atomic structure of materials, including light elements, with minimal beam-indu...
We report a method for quantitative phase recovery and simultaneous electron energy loss spectroscop...
Diffractive imaging, in which image-forming optics are replaced by an inverse computation using scat...
Through numerical simulations, we demonstrate the combination of ptychography and atomic electron to...
The aberration-corrected scanning transmission electron microscope (STEM) has emerged as a key tool ...
This thesis is concerned with the discussion of the limitations and the opportunities of super-resol...
We demonstrate that electron ptychographic phase reconstruction can recover spatial frequencies high...
The microscopic world at the atomic scale seems very remote from our daily lives. Still, we exploit ...
The ability to image light elements in both crystalline and noncrystalline materials at near atomic ...
The ability to image light elements in both crystalline and noncrystalline materials at near atomic ...
Ptychographic diffractive imaging has the potential for structural determination of materials withou...
Recent development in fast pixelated detector technology has allowed a two dimensional diffraction p...
Recent development in fast pixelated detector technology has allowed a two dimensional diffraction p...
Recent development in fast pixelated detector technology has allowed a two dimensional diffraction p...
The paper focuses on the development of electron coherent diffraction imaging in transmission electr...
Imaging the complete atomic structure of materials, including light elements, with minimal beam-indu...
We report a method for quantitative phase recovery and simultaneous electron energy loss spectroscop...
Diffractive imaging, in which image-forming optics are replaced by an inverse computation using scat...
Through numerical simulations, we demonstrate the combination of ptychography and atomic electron to...
The aberration-corrected scanning transmission electron microscope (STEM) has emerged as a key tool ...
This thesis is concerned with the discussion of the limitations and the opportunities of super-resol...
We demonstrate that electron ptychographic phase reconstruction can recover spatial frequencies high...
The microscopic world at the atomic scale seems very remote from our daily lives. Still, we exploit ...
The ability to image light elements in both crystalline and noncrystalline materials at near atomic ...
The ability to image light elements in both crystalline and noncrystalline materials at near atomic ...