Title :
Electron optical aberration calculations in a homogeneous magnetic deflection system with curved axis at extra-large defection angles
Author :
Ximen, Jiye ; Tong, Linsu ; Liu, Zhixiong ; Tu, Yan
Author_Institution :
Dept. of Radio-Electron., Peking Univ., Beijing, China
fDate :
3/1/1996 12:00:00 AM
Abstract :
In the authors´ previous paper, variational deflection aberration theory has been developed for nonhomogeneous magnetic deflection systems with curved axes at extra-large deflection angles. Based on the variational deflection aberration theory, a magnetic deflection system consisting of a homogeneous deflection field and a homogeneous sextupole field has been further investigated in the present paper. For such a magnetic deflection system, both the Gaussian trajectory and all second- and third-order aberrations have been calculated analytically and been expressed by algebraic-trigonometric formulae suitable for computer computations. It is to be expected that the present research and computational results may be useful in designing high-performance magnetic deflection systems for high-definition television color picture tubes with self-convergence
Keywords :
aberrations; electron optics; high definition television; television picture tubes; variational techniques; Gaussian trajectory; algebraic-trigonometric formulae; color picture tubes; curved axis; electron optical aberration calculations; extra-large deflection angles; high-definition television; homogeneous magnetic deflection system; homogeneous sextupole field; variational deflection aberration theory; Displays; Electron beams; Electron optics; Electron tubes; Equations; HDTV; Humans; Image resolution; Magnetic analysis; TV;
Journal_Title :
Electron Devices, IEEE Transactions on