The ability to obtain three-dimensional (3-D) information about morphologies of nanostructures elucidates many interesting properties of materials in both physical and biological sciences. Here we demonstrate a novel method in scanning transmission electron microscopy (STEM) that gives a fast and reliable assessment of the 3-D configuration of curvilinear nanostructures, all without needing to tilt the sample through an arc. Using one-dimensional crystalline defects known as dislocations as a prototypical example of a complex curvilinear object, we demonstrate their 3-D reconstruction two orders of magnitude faster than by standard tilt-arc TEM tomographic techniques, from data recorded by selecting different ray paths of the convergent STE...
Electron microscopy has found wide application in material science and biology with the nanometer / ...
Electron tomography in materials science has flourished with the demand to characterize nanoscale ma...
Dislocation imaging using transmission electron microscopy (TEM) has been an invaluable tool for cha...
Deriving accurate three-dimensional (3-D) structural information of materials at the nanometre level...
Electron tomography was originally developed in 1968, and has been primarily applied to determine th...
Over the last two decades, electron tomography, the combination of tomographic methods and transmiss...
We demonstrate the ability to record a tomographic tilt series containing 3487 images in only 3.5 s ...
151 pagesThe development of fast pixelated direct electron detectors allows the collection of full s...
Electron tomography is a method for obtaining three-dimensional structural information from electron...
We have studied three-dimensional (3D) configurations of dislocations in the β phase of a Ti-35mass%...
Electron tomography is an essential imaging technique for the investigation of morphology and 3D str...
In electron tomography, the fidelity of the 3D reconstruction strongly depends on the employed recon...
Electron tomography based on Z-contrast scanning transmission electron microscopy (STEM) can be appl...
Abstract Scanning transmission electron microscopy (STEM) is suitable for visualizing the inside of ...
The three-dimensional reconstruction of a microscopic specimen has been obtained by applying the tom...
Electron microscopy has found wide application in material science and biology with the nanometer / ...
Electron tomography in materials science has flourished with the demand to characterize nanoscale ma...
Dislocation imaging using transmission electron microscopy (TEM) has been an invaluable tool for cha...
Deriving accurate three-dimensional (3-D) structural information of materials at the nanometre level...
Electron tomography was originally developed in 1968, and has been primarily applied to determine th...
Over the last two decades, electron tomography, the combination of tomographic methods and transmiss...
We demonstrate the ability to record a tomographic tilt series containing 3487 images in only 3.5 s ...
151 pagesThe development of fast pixelated direct electron detectors allows the collection of full s...
Electron tomography is a method for obtaining three-dimensional structural information from electron...
We have studied three-dimensional (3D) configurations of dislocations in the β phase of a Ti-35mass%...
Electron tomography is an essential imaging technique for the investigation of morphology and 3D str...
In electron tomography, the fidelity of the 3D reconstruction strongly depends on the employed recon...
Electron tomography based on Z-contrast scanning transmission electron microscopy (STEM) can be appl...
Abstract Scanning transmission electron microscopy (STEM) is suitable for visualizing the inside of ...
The three-dimensional reconstruction of a microscopic specimen has been obtained by applying the tom...
Electron microscopy has found wide application in material science and biology with the nanometer / ...
Electron tomography in materials science has flourished with the demand to characterize nanoscale ma...
Dislocation imaging using transmission electron microscopy (TEM) has been an invaluable tool for cha...