There are many different strategies that allow the solving of the well-known phase problem corresponding to the loss of phase information during a physical measurement. In microscopy, and, in particular, in transmission electron microscopy, most of these strategies focus on the retrieval of high-resolution information with the importance of lower resolution data often overlooked. Ptychography offers a means to investigate such data. Ptychography is a robust diffractive imaging technique with fast convergence for phase retrieval but, until now, has not been applied at the nanoscale. In this paper, we use the ptychographical iterative engine to retrieve the phase change at the exit plane of metallic nanoparticles using a conventional transmis...
Recent development in fast pixelated detector technology has allowed a two dimensional diffraction p...
Cryo-electron microscopy is an essential tool for high-resolution structural studies of biological s...
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...
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 ...
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 ...
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...
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...
Recent development in fast pixelated detector technology has allowed a two dimensional diffraction p...
Cryo-electron microscopy is an essential tool for high-resolution structural studies of biological s...
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...
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 ...
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 ...
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...
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...
Recent development in fast pixelated detector technology has allowed a two dimensional diffraction p...
Cryo-electron microscopy is an essential tool for high-resolution structural studies of biological s...
Diffractive imaging, in which image-forming optics are replaced by an inverse computation using scat...