Title :
Dispersion charactersitics and electric field distributions of modes propagating in the open electrically gyrotropic semiconductor rod waveguide
Author :
Nickelson, L. ; Gric, T.
Author_Institution :
Semicond. Phys. Inst., Vilnius
Abstract :
Here we present the electrodynamical analysis of the circular cylindrical rod semiconductor n-InSb waveguide placed in the external longitudinal magnetic field. We have investigated electric field distributions of the main and fives higher modes propagating in the n-InSb waveguide at the frequency range from 60 GHz till 240 GHz. We have investigated only the higher hybrid modes HEmn and EHmn with the same symmetry as the main mode when the azimuthal index m = 1. The waveguide radius is r = 1.5 mm and the electron concentration of the semiconductor n-InSb is N = 1019 m-3,. We discovered that the electric field intensity of investigated hybrid modes is observed in the different cross-section places. This fact can be useful for an excitement of some required modes or creating controllable solid-state electronic devices.
Keywords :
circular waveguides; dispersion (wave); electric fields; electrodynamics; magnetic fields; InSb; circular cylindrical waveguide; controllable solid-state electronic devices; dispersion characteristics; dynamical analysis; electric field distributions; external longitudinal magnetic field; frequency 60 GHz to 240 GHz; modes propagation; open electrically gyrotropic semiconductor rod waveguide; Electromagnetic waveguides; Frequency; Gyrotropism; Magnetic fields; Permittivity; Semiconductor materials; Semiconductor waveguides; Solid state circuits; Tensile stress; Waveguide components;
Conference_Titel :
Microwaves, Radar and Wireless Communications, 2008. MIKON 2008. 17th International Conference on
Conference_Location :
Wroclaw
Print_ISBN :
978-83-906662-8-0