Discrete Electron Emission

Fuente: arXiv
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Main Authors: Jonsson, Arnar, Torfason, Kristinn, Manolescu, Andrei, Valfells, Agust
Format: Preprint
Published: 2025
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author Jonsson, Arnar
Torfason, Kristinn
Manolescu, Andrei
Valfells, Agust
author_facet Jonsson, Arnar
Torfason, Kristinn
Manolescu, Andrei
Valfells, Agust
contents Analysis of space-charge effects on electron emission typically makes some assumption of continuity and smoothness, whether this is continuity of charge as in the classical derivation of the Child-Langmuir current, or the mean-field approximation used in particle-in-cell simulations. However, when studying the physics of electron emission and propagation at the mesoscale it becomes necessary to consider the discrete nature of electronic charge to account for the space-charge effect of each individual point charge. In this paper we give an extensive analysis of some previous work on the distribution of electrons under space-charge limited conditions. We examine the spacing of electrons as they are emitted from a planar surface, We present simplified models for analysis of such conditions to derive scaling laws for emission and compare them to computer simulations.
format Preprint
id arxiv_https___arxiv_org_abs_2512_18355
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Discrete Electron Emission
Jonsson, Arnar
Torfason, Kristinn
Manolescu, Andrei
Valfells, Agust
Accelerator Physics
Mesoscale and Nanoscale Physics
Analysis of space-charge effects on electron emission typically makes some assumption of continuity and smoothness, whether this is continuity of charge as in the classical derivation of the Child-Langmuir current, or the mean-field approximation used in particle-in-cell simulations. However, when studying the physics of electron emission and propagation at the mesoscale it becomes necessary to consider the discrete nature of electronic charge to account for the space-charge effect of each individual point charge. In this paper we give an extensive analysis of some previous work on the distribution of electrons under space-charge limited conditions. We examine the spacing of electrons as they are emitted from a planar surface, We present simplified models for analysis of such conditions to derive scaling laws for emission and compare them to computer simulations.
title Discrete Electron Emission
topic Accelerator Physics
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2512.18355