Diffractive imaging, in which image-forming optics are replaced by an inverse computation using scattered intensity data, could, in principle, realize wavelength-scale resolution in a transmission electron microscope. However, to date all implementations of this approach have suffered from various experimental restrictions. Here we demonstrate a form of diffractive imaging that unshackles the image formation process from the constraints of electron optics, improving resolution over that of the lens used by a factor of five and showing for the first time that it is possible to recover the complex exit wave (in modulus and phase) at atomic resolution, over an unlimited field of view, using low-energy (30 keV) electrons. Our method, called ele...
Transmission electron microscopy is an extremely powerful technique for direct characterization of l...
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 ...
Diffractive imaging, in which image-forming optics are replaced by an inverse computation using scat...
As it passes through a sample, an electron beam scatters, producing an exit wavefront rich in inform...
Most implementations of ptychography on the electron microscope operate in scanning transmission (ST...
There are many different strategies that allow the solving of the well-known phase problem correspon...
We demonstrate that electron ptychographic phase reconstruction can recover spatial frequencies high...
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...
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...
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...
Transmission electron microscopy is an extremely powerful technique for direct characterization of l...
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 ...
Diffractive imaging, in which image-forming optics are replaced by an inverse computation using scat...
As it passes through a sample, an electron beam scatters, producing an exit wavefront rich in inform...
Most implementations of ptychography on the electron microscope operate in scanning transmission (ST...
There are many different strategies that allow the solving of the well-known phase problem correspon...
We demonstrate that electron ptychographic phase reconstruction can recover spatial frequencies high...
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...
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...
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...
Transmission electron microscopy is an extremely powerful technique for direct characterization of l...
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 ...