DocumentCode :
14175
Title :
Fit Functions for Relativistic, Single-Species and Bipolar, and Space-Charge-Limited Current Densities
Author :
Weber, B.V. ; Mosher, D. ; Ottinger, P.F.
Author_Institution :
Plasma Phys. Div., Naval Res. Lab., Washington, DC, USA
Volume :
42
Issue :
6
fYear :
2014
fDate :
Jun-14
Firstpage :
1819
Lastpage :
1822
Abstract :
This technical note reviews solutions for planar, relativistic space-charge-limited (SCL) flow both for the single species case with electrons and for bipolar flow with electrons and protons. In most cases, numerical integration or evaluation of special functions is needed to obtain values for these solutions. Here, fit functions for these solutions are derived so that they can be used to calculate 1-D SCL electron and proton current densities and the bipolar enhancement factor for any voltage, including the range transitioning from nonrelativistic to relativistic behavior (approximately 0.1-2 MV, γ = 1.2-5 for electrons and 102-105 MV, γ = 1.1-100 for protons). These fit functions reproduce the exact values to within a few percent, or with an error correction, to within a fraction of 1%. These functions should be useful for evaluating SCL current densities for a range of problems where relativistic effects are important and the 1-D approximation is applicable.
Keywords :
current density; electron emission; space charge; 1D SCL electron; 1D approximation; bipolar current density; bipolar enhancement factor; bipolar flow; error correction; fit functions; nonrelativistic behavior; proton current density; relativistic behavior; relativistic current density; relativistic effects; relativistic space-charge-limited flow; single-species current density; space-charge-limited current density; space-charge-limited emission; voltage 102 MV to 105 MV; Approximation methods; Current density; Educational institutions; Ions; Physics; Plasmas; Protons; Bipolar flow; space-charge-limited (SCL) emission; space-charge-limited (SCL) emission.;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2014.2319208
Filename :
6819070
Link To Document :
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