Title :
Design and Experiment of a Q-band Gyro-TWT Loaded With Lossy Dielectric
Author :
Yan, Ran ; Luo, Yong ; Liu, Guo ; Pu, Youlei
Author_Institution :
Sch. of Phys. Electron., Univ. of Electron. Sci. & Technol. of China, Chengdu, China
Abstract :
Distributed lossy dielectric is of considerable interest for high-power milli- and submillimeter radiation sources, particularly for gyrotron traveling wave tubes (gyro-TWTs). The analytical design and experiment of a Q-band gyro-TWT loaded with periodic lossy dielectric rings operating in the circular TE01 mode at the fundamental cyclotron harmonic are presented. The gyro-TWT is driven by a 70-kV 10-A helical electron beam with a velocity ratio of 1.0. Hot test performs maximum peak output power of 152 kW, 41-dB saturated gain, and 21.7% efficiency at 47.6 GHz. The measured bandwidth over 100 kW is at the range of 47-49 GHz. PIC simulation and large-signal prediction show excellent agreements to the hot test results. The potential backward wave oscillation interactions involving the spurious modes TE11, TE21, and TE02 are effectively suppressed by loading lossy dielectric rings periodically. The Q-band gyro-TWT is zero-drive stable at the operating points, which demonstrates that loading lossy dielectric is excellent to stabilize the spurious oscillations. Moreover, the designs of magnetron injection gun, interaction circuits, and input and output structures are also achieved to satisfy the requirements.
Keywords :
electron guns; gyrotrons; magnetrons; millimetre wave tubes; travelling wave tubes; PIC simulation; Q-band gyrotron; TWT; current 10 A; distributed lossy dielectric ring; frequency 47 GHz to 49 GHz; fundamental cyclotron harmonic; gain 41 dB; gyrotron traveling wave tubes; helical electron beam; highpower millimeter radiation source; input structure; interaction circuit; large signal prediction; magnetron injection gun; output structure; periodic lossy dielectric rings; power 100 kW; power 152 kW; voltage 70 kV; Bandwidth; Couplers; Dielectric losses; Gain; Oscillators; Power generation; Backward wave oscillation (BWO); Q-band; gyrotron traveling wave tube (gyro-TWT); lossy dielectric;
Journal_Title :
Electron Devices, IEEE Transactions on
DOI :
10.1109/TED.2012.2219584