Simulation for field emission images of micrometer-long SWCNTs
classification
❄️ cond-mat.mtrl-sci
cond-mat.other
keywords
fieldemissionappliedbreakingcarbonimagesmacroscopicalgorithm
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The electron distribution of open-ended single-walled carbon nanotubes with chirality indexes (7,0) and (5,5) in the field emission conditions was calculated via a multi-scaled algorithm. The field emission images were produced numerically. It was found that the emission patterns change with the applied macroscopic field. Especially, the symmetry of the emission pattern of the (7,0) carbon nanotube is breaking in the lower field but the breaking is less obvious in the higher field. The enlargement factor increases with the applied macroscopic field.
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