Influence of average electron injection velocity on space-charge-limited current in vacuum devices

Space-charge-limited current is a fundamental constraint in electron emission systems, traditionally described by the Child–Langmuir law for one-dimensional parallel plate geometry assuming zero electron injection velocity from the cathode. First, a simplified one-dimensional model of space charge is introduced in which emitted electrons are treated as a collinear sequence of point charges with a fixed average electron injection velocity, each contributing to a reduction in the emission barrier. A semiclassical approach is then developed to self-consistently solve the charge transport and Poisson equations for three canonical geometries (parallel plates, concentric cylinders, and concentric spheres), based on a modification of a recent fully quantum-mechanical algorithm developed by Hernandez et al. [J. Appl. Phys. 139, 174503 (2026)] to calculate the average electron injection velocity for non-planar metallic cathodes. The approach is used to calculate the field emission characteristics and Miram curves of all-metallic vacuum diodes with three different geometries using a physically accurate average injection velocity distribution and compared to those obtained using a conventional fixed average injection velocity to stress the importance of the former. For the case of a vacuum diode with a barium-on-tungsten cathode with parallel plate configuration, our simulations are in good agreement with the field emission measurements of Barbour et al. [Phys. Rev. 92, 45 (1953)], stressing the importance of accurately modeling injection velocity distributions in field emission theory.

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Publication Details

Journal
Journal of Applied Physics
Published
2026-09-28
DOI
https://doi.org/10.1063/5.0348438
Primary Topic
Vacuum and Plasma Arcs
Type
article
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article

Influence of average electron injection velocity on space-charge-limited current in vacuum devices

Jonathan Ludwick, Harris J. Hall, Nathaniel Hernandez, Tyson C. Back et al.
Journal of Applied Physics
Vacuum and Plasma Arcs
article

Influence of average electron injection velocity on space-charge-limited current in vacuum devices

Jonathan Ludwick, Harris J. Hall, Nathaniel Hernandez, Tyson C. Back, Marc M. Cahay, Kevin L. Jensen
article en

Abstract

Space-charge-limited current is a fundamental constraint in electron emission systems, traditionally described by the Child–Langmuir law for one-dimensional parallel plate geometry assuming zero electron injection velocity from the cathode. First, a simplified one-dimensional model of space charge is introduced in which emitted electrons are treated as a collinear sequence of point charges with a fixed average electron injection velocity, each contributing to a reduction in the emission barrier. A semiclassical approach is then developed to self-consistently solve the charge transport and Poisson equations for three canonical geometries (parallel plates, concentric cylinders, and concentric spheres), based on a modification of a recent fully quantum-mechanical algorithm developed by Hernandez et al. [J. Appl. Phys. 139, 174503 (2026)] to calculate the average electron injection velocity for non-planar metallic cathodes. The approach is used to calculate the field emission characteristics and Miram curves of all-metallic vacuum diodes with three different geometries using a physically accurate average injection velocity distribution and compared to those obtained using a conventional fixed average injection velocity to stress the importance of the former. For the case of a vacuum diode with a barium-on-tungsten cathode with parallel plate configuration, our simulations are in good agreement with the field emission measurements of Barbour et al. [Phys. Rev. 92, 45 (1953)], stressing the importance of accurately modeling injection velocity distributions in field emission theory.

Journal of Applied PhysicsVol. 140(12)
United States Air Force Research Laboratory (US), Wright-Patterson Air Force Base (US), University of Cincinnati (US), University of Maryland, College Park (US)
Peace, Justice and strong institutions
Openalex Percentile: Top 14%
Vacuum and Plasma Arcs
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