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Analytical calculations of anode plasma position in high-voltage discharge range in case of auxiliary discharge firing

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Abstract

We consider the mathematical model of triode high-voltage glow discharge range in case of auxiliary discharge firing. On a basis of analysis of elementary processes of charged particles interaction in a discharge range we obtain analytical relation, which allows to obtain the anode plasma position with regard to the cathode. Obtained results can be used for analysis of analysis of energy balance in a discharge range and self-maintained electron-ion optics of high voltage glow discharge electron sources in case of electrical control of electron beam current.

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References

  1. S. V. Denbnovetsky, V. I. Melnik, I. V. Melnik, and B. A. Tugay, “Gas-Discharge Electron Guns and Their Application in Industrial Fields,” Elektronika i Svyaz’ (Avers, Kyiv, 2005), Pt. 2, pp. 84–87, issue “Problemy Elektroniky”.

    Google Scholar 

  2. S. V. Ladokhin, N. I. Levitskiy, V. B. Chernyavskiy, V. G. Shmidigin, L. A. Kravchuk, and A. S. Gladkov, Cathode-Ray Fusing in Foundry Engineering (Stal, Kyiv, 2007) [in Russian].

    Google Scholar 

  3. M. A. Zavyalov, Yu. Ye. Kreyndel, A. A. Novikov, and L. P. Shanturin, Plasmic Processes in Technological Electron Guns (Energoatomizdat, Moscow, 1989) [in Russian].

    Google Scholar 

  4. I. V. Melnik, B. A. Tugay, and S. B. Tugay, “Increase of Stability of Electromagnetic Leak Valve in a System of Automated Control of Gas-Discharge Run,” Elektronika i Svyaz’, No. 14, 172 (2002).

  5. S. Schiller, U. Heisig, and S. Panzer, Electron Beam Technology (Wiley, New York, 1982).

    Google Scholar 

  6. S. V. Denbnovetsky, V. I. Melnik, I. V. Melnik, and B. A. Tugay, “Investigation of Forming of Electron Beam in Glow Discharge Electron Guns with Additional Electrode,” in Proc. of XVIII Int. Symp. “Discharges and Electrical Insulation in Vacuum,” XVIII ISDEIV, August 17–21, 1998, Eindhoven, Netherlands (Eindhoven Technical University, Eindhoven), Vol. 2, pp. 637–640.

  7. I. V. Melnik and S. B. Tugay, “Research of Electron-Optical Properties of Triode Electrode Systems of High-Voltage Glow Discharge Taking into Account Position and Shape of Anode Plasma Boundary,” Elektronika i Svyaz’, No. 2(61), 9 (2011).

  8. A. A. Novikov, Sources of Electrons of High-Voltage Glow Discharge with Anode Plasma (Energoatomizdat, Moscow, 1983) [in Russian].

    Google Scholar 

  9. I. V. Melnik, “Classification of Models of Electron-Optical Systems with Regard to CAD Methodology,” Elektronika i Svyaz’, No. 2(37), 20 (2007).

  10. I. V. Melnik and S. B. Tugay, “Methodology Simulation of Technological Electrons Sources of High-Voltage Glow Discharge,” Elektronnoe Modelirovanie 32, No. 6, 31 (2010).

    Google Scholar 

  11. I. V. Mel’nik, “Numerical Simulation of Distribution of Electric Field and Particle Trajectories in Electron Sources Based on High-Voltage Glow Discharge,” Izv. Vyssh. Uchebn. Zaved., Radioelektron. 48(6), 61 (2005) [Radioelectron. Commun. Syst. 48(6), 54 (2005)].

    MathSciNet  Google Scholar 

  12. I. V. Melnik and S. B. Tugay, “Modeling of Shapes of Boundary of Anode Plasma in Triode Electron Systems of High-Voltage Glow Discharge,” Elektronnoe Modelirovanie 34, No. 1, 15 (2012).

    Google Scholar 

  13. Yu. P. Rayzer, Gas Discharge Physics. Tutorial (Nauka, Moscow, 1987) [in Russian].

    Google Scholar 

  14. V. L. Granovskiy, Electrical Current in a Gas Media. Saturated Current (Nauka, Moscow, 1971) [in Russian].

    Google Scholar 

  15. I. N. Bronstein and K. A. Semendyayev, Mathematics Handbook for Engineers and Technical Students (Nauka, Moscow, 1981) [in Russian].

    Google Scholar 

  16. I. V. Melnik, The System for Science-Technical Calculations MatLab and Its Application to Engineering Tasks Solving. Tutorial, Vol. 1: Basic Principles of the System Operation and Functionality (University “Ukraina”, Kyiv, 2009) [in Ukrainian].

    Google Scholar 

  17. I. V. Melnik, The System for Science-Technical Calculations MatLab and Its Application to Engineering Tasks Solving. Tutorial, Vol. 2: Basic Principles of Programming and Applied Problems Solution (University “Ukraina”, Kyiv, 2009) [in Ukrainian].

    Google Scholar 

  18. I. V. Melnik, “Approximation of Voltage-Current Characteristics of Technological Electrons Sources of High-Voltage Glow Discharge with Help of MatLab Tools,” Vestnik Kherson National Technical University, 2(35), 299 (2009).

    Google Scholar 

  19. I. V. Melnik, “The System of Input Shape Parameters of Physical Topology Model of Electrode Systems of High-Voltage Glow Discharge and Specificity of Its Programming Realization,” Elektronika i Svyaz’ (Avers, Kyiv, 2006), Pt. 2, pp. 120–127, issue “Problemy Elektroniky”.

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Original Russian Text © I.V. Melnik, S.B. Tugay, 2012, published in Izv. Vyssh. Uchebn. Zaved., Radioelektron., 2012, Vol. 55, No. 11, pp. 50–59.

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Melnik, I.V., Tugay, S.B. Analytical calculations of anode plasma position in high-voltage discharge range in case of auxiliary discharge firing. Radioelectron.Commun.Syst. 55, 514–521 (2012). https://doi.org/10.3103/S0735272712110064

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