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- W2777620879 abstract "The ever-decreasing size of electron sources, many of which are now on the nanometer scale, has prompted several recent theoretical studies of electron emission from highly curved surfaces. These studies have naturally focused on emission from grounded tips and spheres, as is appropriate for most nanoelectronic devices, and have found significant corrections from the planar theories. However numerous examples of nongrounded nanoscale electron emitters exist in the form of hot and/or charged dust, droplets and aerosols in a variety of industrial, laboratory, and natural environments. In this paper, the field-induced and thermal emission currents from electrically isolated spherical surfaces are considered by using both approximate series expansions and numerical calculations of the barrier form correction factors within the framework of the Murphy–Good emission theory. The resulting expressions are used to find the floating potentials of dust grains in plasmas and significant corrections to the planar theory, which continues to be in widespread usage, are found." @default.
- W2777620879 created "2018-01-05" @default.
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- W2777620879 date "2018-03-01" @default.
- W2777620879 modified "2023-10-14" @default.
- W2777620879 title "Electron emission from electrically isolated spheres" @default.
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- W2777620879 doi "https://doi.org/10.1116/1.5004748" @default.
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