Title :
Particle-in-Cell simulation of gyro-TWT using a metal PBG circuit
Author :
Thottappan, M. ; Jain, P.K.
Author_Institution :
Dept. of Electron. Eng., Indian Inst. of Technol. (Banaras Hindu Univ.), Varanasi, India
Abstract :
The Particle-in-Cell (PIC) simulation of a Ka-band Gyrotron Traveling Wave Tube (gyro-TWT) amplifier using a Metal Photonic Band Gap (MPBG) waveguide as its RF interaction circuit is presented to study the electron beam-RF wave interaction behavior. The MPBG guide is chosen as an RF interaction circuit to accomplish the single mode operation in the amplifier by its mode selective property at short wavelengths. The technique for generating hollow annular gyrating electron beam is demonstrated using “CST particle studio” code. The energy transfer phenomenon from the gyrating hot electron beam to the propagating electromagnetic (EM) wave has been studied. The PIC code predicts that the peak output power in the MPBG loaded gyro-TWT as ~ 90 kW at 35 GHz with an electronic efficiency of ~ 13 % for a velocity ratio of 1.05. The saturated gain has been calculated as ~ 40 dB and the 3 dB instantaneous bandwidth is obtained ~ 14%.
Keywords :
gyrotrons; hot carriers; millimetre wave amplifiers; millimetre wave propagation; millimetre wave tubes; photonic band gap; travelling wave amplifiers; travelling wave tubes; waveguides; CST particle studio code; EM wave propagation; Ka-band gyrotron traveling wave tube amplifier; MPBG waveguide; PIC simulation; RF interaction circuit; electromagnetic wave propagation; electron beam-RF wave interaction behavior; electronic efficiency; energy transfer phenomenon; frequency 35 GHz; gyrating hot electron beam; gyro-TWT; hollow annular gyrating electron beam generation; metal PBG circuit; metal photonic band gap; mode selective property; particle-in-cell simulation; single mode operation; Electric fields; Electromagnetic waveguides; Electron beams; Integrated circuit modeling; Lattices; Metals; Radio frequency; PIC simulation; beam-wave interaction; gyro-TWT; metal PBG; mode competition;
Conference_Titel :
Microwave Conference (GeMiC), 2015 German
DOI :
10.1109/GEMIC.2015.7107805