Have a personal or library account? Click to login
Charged Particle Dynamics Inside Electrostatic Quadrupole Deflection System with Circular Electrodes and Rotationally Symmetric Design Cover

Charged Particle Dynamics Inside Electrostatic Quadrupole Deflection System with Circular Electrodes and Rotationally Symmetric Design

Open Access
|Sep 2015

References

  1. 1. KUREPA, M. V., TASIC, M. D. and KUREPA, J. M. 1974. A four element energy scanning electron lens system with fixed image position and magnification. J. Phys. E: Sci. Instrum., 7, 940-4.
  2. 2. KISKER, E. 1982. Simple method for accurate ray tracing in electrostatic lenses. Rew. Sci. Instrum., 53, 114-7.
  3. 3. BERTRAM, S. 1940. Proceedings of the Institution of Radiation Engineers. 28, 418-420.
  4. 4. IMHOF, R. E. and READ, F. H. 1968. A three-aperture electron optical lens for producing an image of variable energy but fixed position. J. Phys. E: Sci. Instrum., 1, 859-60, 1968.
  5. 5. READ, F. H. 1970. Asymmetric electrostatic lenses of three aperture. J. Phys. E: Sci. Instrum., 3, 127-31.
  6. 6. EL-KAREH A. B. and STURANS M. A. 1971b. Analysis of the 3-Tube Asymmetrical Unipotential Lens. J. Appl. Phys., 42, 4902-7.
  7. 7. EL-KAREH, A. B. and EL-KAREH, J. C. J. 1970. Electron Beams, Lenses and Optics vols 1 and 2. London: Academic Press.10.1016/B978-0-12-238001-3.50005-X
  8. 8. READ, F. H. 1969a. Accurate calculations of double-aperture electrostatic immersion lenses. J. Phys. E: Sci. Instrum, 2, 165-169.
  9. 9. EL-KAREH A. B. 1969. Rec. 10.th Symp. Electron, Ion and Laser Beam Technology. ed L Marton. San Francisco: San Fransisco Press, 393-6.
  10. 10. READ, F. H. 1971. Electrostatic cylinder lenses III: Three element asymmetric voltage lenses. J. Phys. E: Sci.Instrum., 5, 156-160.
  11. 11. KODAMA, M. 1981. An improvement to the variational method for boundary value problems and its application to two-cylinder electrostatic lenses. J. Phys. D: Appl. Phys. 15, 1657-66.
  12. 12. READ, F. H. 1971. Zero gap electrostatic aperture lenses. J. Phys. E: Sci. Instrum. 4 562-6.10.1088/0022-3735/4/8/003
  13. 13. RENAU A., READ F. H. and J BRUNT, N. H. 1982. The Charge Density Method of solving electrostatic problems with and without the inclusion of space-charge. J. Phys. E: Sci. Instrum, 15, 347-354.
  14. 14. Van HOOF, H. A. 1980. An electrostatic lens for polar-angle selection of photoemitted electrons. J. Phys. E: Sci. Instrum, 14, 325-29.
  15. 15. HARTING, E. and READ, F. H. 1976. Electrostatic Lenses. Amsterdam: Elsevier.
  16. 16. MUNRO, E. 1971. Electron Microscopy and Analysis. W C Nixon. London: Institute of Physics, 84-5.
  17. 17. MUNRO, E. 1970. Proc. 7th Cong. Electron Microscopy. Grenoble ed P Favard, 55-6.
  18. 18. MUNRO, E. 1971. PhD Thesis. University of Cambridge.
  19. 19. HEDDLE, D.W.O. 1999. Accurate calculation of cylinder lens potentials using the ninepoint relaxation and Bessel expansion methods. J. Phys. D: Appl. Phys., 32, 1447-54.
  20. 20. NATALI, S., Di CHIO, D. and KUYATT, C.E. 1972. Accurate Calculations of Properties of the Two-Tube Electrostatic Lens: I. Improved Digital Methods for the Precise Calculation of Electric Fields and Trajectories. J. Research of the National Bureau of Standards, 76A, 27-35.
  21. 21. EDWARDS Jr., D. 1983. Accurate calculations of electrostatic potentials for cylindrically symmetric lenses. Rev. Sci. Inst., 54, 1729-35.
  22. 22. COOK, R. D. and HEDDLE, D. W. O. 1976. The simple accurate calculation of cylinder lens potentials and focal properties. J. Phys. E: Sci. Instrum., 9, 279-82.
  23. 23. J. R. PIERCE. 1954. Theory and Design of Electron Beams. (Chapters VI, VII), 2nd ed. New York: Van Nostrand.
  24. 24. KLEMPERER, O., BARNETT, M. E. 1971. Electron Optics. (Chapters 2, 3), 3rd ed. Cambridge: Cambridge University Press.
Language: English
Page range: 61 - 70
Published on: Sep 30, 2015
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2015 Stanislav Minárik, Róbert Riedlmajer, published by Slovak University of Technology in Bratislava
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.