Fast neutral beams (beam energy of tens to hundreds of eV) may be useful for mitigating charging damage that can occur in conventional plasma processing of materials. For neutral beam processing to be viable, however, the beam energy, flux and directionality must be comparable to those in traditional reactive ion etching or reactive ion beam technologies. This paper provides a review of fast neutral beams for materials processing. Neutral beam generation techniques are outlined. Characterization of neutral beams is important to measure the beam flux, energy and angular distributions. Neutral beam materials processing is discussed with emphasis on etching of thin films. 1
Energetic neutral beams are used for heating and diagnostics in present magnetic fusion experiments....
Positive ions can make efficient neutral beams when direct energy conversion is incorporated at ener...
Abstract: Technologies producing high current density (>20mA/cm2) negative ions at a low operatin...
As the size of very large scale integration (VLSI) circuits and semiconductor devices has been shrin...
Abstract—In this paper, a particle-in-cell simulation of ion and neutral-beam extraction through a g...
As the feature size shrinks toward the nanoscale, charge-up damage from ion-induced etching becomes ...
Neutral beam processing is being considered as a new technique to reduce plasma-induced damage in ma...
This is the final report of a one-year, Laboratory-Directed Research and Development (LDRD) project ...
The aim of this research is to explore ways in which energetic neutral beams can be ...
We present a new method of product processing with beams of accelerated electrons and fast neutral a...
Neutral beam processing has evolved into one of the most promising methods for overcoming plasma pro...
The injection of fast neutral beams into plasmas is thought to be the most promising way for the fus...
Recent advances in high-intensity laser-produced plasmas have demonstrated their potential as compac...
We have quantitatively studied the production of low energy (0.1-10 eV) metal neutral beams by laser...
Large-area, thin aluminum foils were prepared for use in beam neutralization experiments. The foils ...
Energetic neutral beams are used for heating and diagnostics in present magnetic fusion experiments....
Positive ions can make efficient neutral beams when direct energy conversion is incorporated at ener...
Abstract: Technologies producing high current density (>20mA/cm2) negative ions at a low operatin...
As the size of very large scale integration (VLSI) circuits and semiconductor devices has been shrin...
Abstract—In this paper, a particle-in-cell simulation of ion and neutral-beam extraction through a g...
As the feature size shrinks toward the nanoscale, charge-up damage from ion-induced etching becomes ...
Neutral beam processing is being considered as a new technique to reduce plasma-induced damage in ma...
This is the final report of a one-year, Laboratory-Directed Research and Development (LDRD) project ...
The aim of this research is to explore ways in which energetic neutral beams can be ...
We present a new method of product processing with beams of accelerated electrons and fast neutral a...
Neutral beam processing has evolved into one of the most promising methods for overcoming plasma pro...
The injection of fast neutral beams into plasmas is thought to be the most promising way for the fus...
Recent advances in high-intensity laser-produced plasmas have demonstrated their potential as compac...
We have quantitatively studied the production of low energy (0.1-10 eV) metal neutral beams by laser...
Large-area, thin aluminum foils were prepared for use in beam neutralization experiments. The foils ...
Energetic neutral beams are used for heating and diagnostics in present magnetic fusion experiments....
Positive ions can make efficient neutral beams when direct energy conversion is incorporated at ener...
Abstract: Technologies producing high current density (>20mA/cm2) negative ions at a low operatin...