• Frontiers of Optoelectronics
  • Vol. 1, Issue 1, 50 (2008)
Liwei ZHOU*
Author Affiliations
  • Department of Optical Engineering, School of Information Science and Technology, Beijing Institute of Technology, Beijing 100081, China
  • show less
    DOI: 10.1007/s12200-008-0001-9 Cite this Article
    Liwei ZHOU. On the theory of temporal aberrations for dynamic electron optics[J]. Frontiers of Optoelectronics, 2008, 1(1): 50 Copy Citation Text show less
    References

    [1] Monastyrski M A, Schelev M Y. Theory of Temporal Aberrations of Cathode Lenses. Moscow: Lebedeev Institute of Physics, 1980 (in Russian)

    [2] Recknagel A. Theorie des elektrisohen elecktronen miktroskops fur selbstrakler. Z Angew Physik, 1941, 117: 689-708 (in German)

    [3] Artimovich L A. Electrostatic properties of emission systems. Bulletin of Academy of Sciences, USSR Physics Series, 1944, 8(6): 313-328 (in Russian)

    [4] Savoisky Y K. Fanchenko S D. Physical foundation of electron-optical chronograph. Report of Academy of Sciences, USSR, 1956, 108(2): 218-221 (in Russian)

    [5] Csorba I P. Chromatic aberration limited image transfer characteristics of image tube lenses of simple geometry. RCA Review, 1970, 31(3): 534-550

    [6] Zhou L W, Li Y, Zhang Z Q, et al. Test and verification of temporal aberration theory for electron optical imaging systems by an electrostatic concentric spherical system. Acta Physica Sinica, 2005, 54(8): 3597-3603 (in Chinese)

    [7] Zhou L W. Electron Optics with Wide Beam Focusing (Monograph). Beijing: Beijing Institute of Technology Press, 1993 (in Chinese)

    [8] Zhou LW, Ai K C, Pan S C. On aberration theory of cathode lenses with combined electromagnetic focusing. Acta Physica Sinica, 1983, 32(3), 376-392 (in Chinese)

    [9] Zhou L W. Electron optics of concentric spherical system composed of two electrodes. Focusing and Imaging of Wide Electron Beams—Selected Papers on Electron Optics. Beijing: Beijing Institute of Technology Press, 1994, 11-29 (in Chinese)

    [10] Ximen J. Electron-optical properties and aberration theory of combined immersion objectives. Acta Physica Sinica, 1957, 13(4): 339-356 (in Chinese)

    [11] Kulikov Y V, Monastyrski M A, Feiding H E. Aberration theory of third order of cathode lenses: aberrations of cathode lenses with combined electric and magnetic fields. Radiotechnics and Electronics, 1978, 23(1): 167-174

    [12] Ximen J, Zhou L W, Ai K C. Variation theory of aberrations in cathode lenses. Optik, 1983, 66: 19-34

    [13] Zhou L W, Li Y, Zhang Z Q, et al. On the theory of temporal aberrations for cathode lenses. Optik, 2005, 116(4): 175-184

    [14] Zhou L W, Li Y, Zhang Z Q, et al. Theory of temporal aberrations for electron optical imaging systems by ‘‘Direct Integral Method’’. Acta Physica Sinica, 2005, 54(8): 3591-3596 (in Chinese)

    [15] Zhou L W, Li Y, Zhang Z Q, et al. On the theory of temporal aberrations for electron optical imaging systems by using ‘‘Direct IntegralMethod’’. In: Proceedings of SPIE, 2005, 5580: 710-724

    [16] Ruska E. Zur fokussierbarkeit von kathoden-strahlbundeln grosser ausgangsquerchnitte. Z Angew Physik, 1993, 83(9): 684-687 (in German)

    [17] Schagen P, Bruining H, Francken J C. A simple electrostatic electron-optical system with only one voltage. Philips Research Reports, 1952, 7(2): 119-130

    [18] Zhou L W. Electron optics of concentric spherical electromagnetic focusing systems. Advances in Electronics and Electron Physics, 1979, 52: 119-132

    [19] Zhou L W, Monastyrski M A, Schelev M Ya, et al. On the temporal aberration theory of electron optical imaging systems by ‘‘t Variation Method’’. Acta Electronica Sinica, 2006, 34(2): 193-197 (in Chinese)

    [20] Lai H L, Jin T J. Biography of K. Popper. Shijiazhuang: Hebei People Press, 1998 (in Chinese)

    Liwei ZHOU. On the theory of temporal aberrations for dynamic electron optics[J]. Frontiers of Optoelectronics, 2008, 1(1): 50
    Download Citation