Electron-beam-induced deposition (EBID) is a potentially fast and resistless deposition technique which might overcome the fundamental resolution limits of conventional electron-beam lithography. We advance the understanding of the EBID process by simulating the structure growth. The merit of our model is that it explains the shapes of structures grown by EBID quantitatively. It also predicts the possibility to directly fabricate structures with lateral sizes smaller than 10 nm and points out the ideal conditions to achieve this goal. We verify these predictions by fabricating sub-10-nm lines and dots in a state-of-the-art scanning transmission electron microscope
<p>The potential of Electron Beam Induced Deposition (EBID) to become a reliable and reproducible di...
In a first study to analyze the feasibility of electron beam-induced deposition (EBID) for creating ...
University of Technology, Sydney. Faculty of Science.Electron beam induced deposition (EBID) is a ma...
Electron beam induced deposition (EBID) is a direct-write lithographic technique that utilizes the d...
Electron beam induced deposition (EBID) is a direct-write lithographic technique that utilizes the d...
Electron beam induced deposition (EBID) is a direct-write lithographic technique that utilizes the d...
Electron beam induced deposition (EBID) is a direct-write lithographic technique that utilizes the d...
While the standard beam-induced deposition approach is to grow deposits on a substrate, deposition o...
While the standard beam-induced deposition approach is to grow deposits on a substrate, deposition o...
Electron-beam-induced deposition (EBID) is a versatile micro- and nanofabrication technique based on...
Electron-beam-induced deposition (EBID) is a versatile micro- and nanofabrication technique based on...
Focussed Electron Beam Induced Processing is a high resolution direct-write nanopatterning technique...
The potential of Electron Beam Induced Deposition (EBID) to become a reliable and reproducible direc...
The potential of Electron Beam Induced Deposition (EBID) to become a reliable and reproducible direc...
In a first study to analyze the feasibility of electron beam-induced deposition (EBID) for creating ...
<p>The potential of Electron Beam Induced Deposition (EBID) to become a reliable and reproducible di...
In a first study to analyze the feasibility of electron beam-induced deposition (EBID) for creating ...
University of Technology, Sydney. Faculty of Science.Electron beam induced deposition (EBID) is a ma...
Electron beam induced deposition (EBID) is a direct-write lithographic technique that utilizes the d...
Electron beam induced deposition (EBID) is a direct-write lithographic technique that utilizes the d...
Electron beam induced deposition (EBID) is a direct-write lithographic technique that utilizes the d...
Electron beam induced deposition (EBID) is a direct-write lithographic technique that utilizes the d...
While the standard beam-induced deposition approach is to grow deposits on a substrate, deposition o...
While the standard beam-induced deposition approach is to grow deposits on a substrate, deposition o...
Electron-beam-induced deposition (EBID) is a versatile micro- and nanofabrication technique based on...
Electron-beam-induced deposition (EBID) is a versatile micro- and nanofabrication technique based on...
Focussed Electron Beam Induced Processing is a high resolution direct-write nanopatterning technique...
The potential of Electron Beam Induced Deposition (EBID) to become a reliable and reproducible direc...
The potential of Electron Beam Induced Deposition (EBID) to become a reliable and reproducible direc...
In a first study to analyze the feasibility of electron beam-induced deposition (EBID) for creating ...
<p>The potential of Electron Beam Induced Deposition (EBID) to become a reliable and reproducible di...
In a first study to analyze the feasibility of electron beam-induced deposition (EBID) for creating ...
University of Technology, Sydney. Faculty of Science.Electron beam induced deposition (EBID) is a ma...