Cite

[1] A. Modinos, Field, Thermionic, Secondary Electron Emission Spectroscopy, New York, Plenum, 1984.10.1007/978-1-4757-1448-7Search in Google Scholar

[2] G. N. Fursey, Field Emission in Vacuum Microelectronics, New York: Kluwer, 2005.Search in Google Scholar

[3] S.-D. Liang, Quantum Tunneling Field Electron Emission Theories, World Scientific: Singapore, 2014.Search in Google Scholar

[4] A. Evtukh, H. Hartnagel, O. Yilmazoglu, H. Mimura, and D. Pavlidis, Vacuum Nanoelectronic Devices, Chichester, UK, Wiley, 2015.10.1002/9781119037989Search in Google Scholar

[5] K. L. Jensen, Introduction to the Physics of Electron Emission, Chichester, UK: Wiley, 2018.10.1002/9781119051794Search in Google Scholar

[6] R. G. Forbes, “Why Converting Field Emission Voltages to Macroscopic Fields before Making a Fowler-Nordheim Plot Has Often Led to Spurious Characterization Results”, Journal of Vacuum Science Technology B, vol. 37, p. 051802, 2019.10.1116/1.5111455Search in Google Scholar

[7] T. E. Stern, B. S. Gossling, and R. H. Fowler, “Further Studies in the Emission of Electrons from Cold Metals”, Proceedings of the Royal Society of London Series A, vol. 124, pp. 699–723, 1929.10.1098/rspa.1929.0147Search in Google Scholar

[8] R. G. Forbes, J. H. B. Deane, A. Fischer, and M. S. Mousa, “Fowler-Nordheim Plot Analysis: A Progress Report”, Jordan Journal of Physics, vol. 8, pp. 125–147, 2015.Search in Google Scholar

[9] R. A. Millikan and C. C. Lauritsen, “Relations of Field-Currents to Thermionic Currents”, Proceedings of the National Academy of Sciences, vol. 14, pp. 45–49, 1928.10.1073/pnas.14.1.45108534516587302Search in Google Scholar

[10] R. G. Forbes, “Use of Millikan-Lauritsen Plots, Rather than Fowler-Nordheim Plots”, Journal of Applied Physics, vol. 105, p. 114313, 2009.10.1063/1.3140602Search in Google Scholar

[11] R. G. Forbes, “The Murphy-Good plot: A Better Method of Analysing Field Emission Data”, Royal Society Open Science, vol. 6, 190912, 2019.10.1098/rsos.190912Search in Google Scholar

[12] R. G. Forbes, “Development of a Simple Quantitative Test for Lack of Field Emission Orthodoxy”, Proceedings of the Royal Society of London Series A, vol. 469, p. 20133027, 2013.10.1098/rspa.2013.0271Search in Google Scholar

[13] M. M. Allaham, R. G. Forbes, and M. S. Mousa, “Applying the Field Emission Orthodoxy Test to Murphy-Good plots”, Jordan Journal of Physics, in press, March 2020.Search in Google Scholar

[14] J. H. B. Deane and R. G. Forbes, “The Formal Derivation of an Exact Series Expansion for the Principal Schottky-Nordheim Barrier Function v “, Journal of Physics A: Mathematical Theoretical vol. 41, p. 395301, 2008.10.1088/1751-8113/41/39/395301Search in Google Scholar

[15] R. G. Forbes and J. H. B. Deane, “Transmission Coefficients for the Exact Triangular Barrier: an Exact General Analytical Theory that can Replace Fowler & Nordheim’s 1928 Theory”, Proceedings of the Royal Society of London Series A, vol. 467, pp. 2927–2947, 2011, See Electronic Supplementary Material for information about universal constants used in field emission.10.1098/rspa.2011.0025Search in Google Scholar

[16] International Standards Organization (ISO) International Standard ISO 80000-1:2009 Quantities and Units Part 1: General, Geneva: ISO, 2009, Section 6.Search in Google Scholar

[17] http://fieldemissionanalysis.weebly.com/.Search in Google Scholar

[18] W. P. Dyke and J. K. Trolan, “Field Emission: Large Current Densities”, Physical Review vol. 89, pp. 799–808, 1953.10.1103/PhysRev.89.799Search in Google Scholar

[19] M. S. Mousa, “Influence of a Dielectric Coating on Field Electron Emission from Micro-Point Electron Sources”, Surface Interface Analysis, vol. 39, pp. 102–110, 1986.10.1002/sia.2470Search in Google Scholar

[20] W. Schottky, “¨Uber den Einfluss von Strukturwirkungen, besonders der Thomsonschen Bildkraft, auf die Elektronenemission der Metale”, Physikalische Zeitschrift, vol. 15, pp. 872–878, 1914.Search in Google Scholar

[21] J. J. Thomson, Conduction of Electricity through Gases, 1st ed, Cambridge University Press, page 386, 1903.Search in Google Scholar

eISSN:
1339-309X
Language:
English
Publication timeframe:
6 times per year
Journal Subjects:
Engineering, Introductions and Overviews, other