On the theory of temporal aberrations for dynamic electron optics

ZHOU Liwei

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PDF(129 KB)
Front. Optoelectron. ›› 2008, Vol. 1 ›› Issue (1-2) : 50-57. DOI: 10.1007/s12200-008-0001-9

On the theory of temporal aberrations for dynamic electron optics

  • ZHOU Liwei
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Abstract

A new theory for temporal aberrations of dynamic optics by applying the direct integral method is put forward in the present paper. A new definition of temporal aberration is given, in which a certain initial energy of electron emission emitted from a photocathode along the axial direction

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ZHOU Liwei. On the theory of temporal aberrations for dynamic electron optics. Front. Optoelectron., 2008, 1(1-2): 50‒57 https://doi.org/10.1007/s12200-008-0001-9

References

1. Monastyrski M A, Schelev M Y . Theory of Temporal Aberrationsof Cathode Lenses. Moscow: Lebedeev Instituteof Physics, 1980 (in Russian)
2. Recknagel A . Theoriedes 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-opticalchronograph. Report of Academy of Sciences,USSR, 1956, 108(2): 218–221 (in Russian)
5. Csorba I P . Chromatic aberration limited image transfer characteristics of imagetube 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 aberrationtheory for electron optical imaging systems by an electrostatic concentricspherical 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 ofTechnology Press, 1993 (in Chinese)
8. Zhou L W, Ai K C, Pan S C . On aberration theory of cathode lenses with combinedelectromagnetic focusing. Acta PhysicaSinica, 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 ElectronOptics. Beijing: Beijing Institute of TechnologyPress, 1994, 11–29 (in Chinese)
10. Ximen J . Electron-opticalproperties 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: aberrationsof 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 cathodelenses.Optik, 2005, 116(4): 175–184
14. Zhou L W, Li Y, Zhang Z Q, et al.. Theory of temporal aberrations for electronoptical imaging systems by “Direct Integral Method”. Acta Physica Sinica, 2005, 54(8): 3591–3596 (inChinese)
15. Zhou L W, Li Y, Zhang Z Q, et al.. On the theory of temporal aberrations for electronoptical imaging systems by using “Direct Integral Method”. In: Proceedings of SPIE, 2005, 5580: 710–724. doi:10.1117/12.567688
16. Ruska E . Zurfokussierbarkeit 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 onlyone voltage. Philips Research Reports, 1952, 7(2): 119–130
18. Zhou L W . Electron optics of concentric spherical electromagnetic focusingsystems. Advances in Electronics and ElectronPhysics, 1979, 52: 119–132
19. Zhou L W, Monastyrski M A, Schelev M Ya, et al.. On the temporal aberration theory of electronoptical imaging systems by “τ Variation Method”. Acta ElectronicaSinica, 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)
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