DocumentCode :
1503610
Title :
Generation of Subgigawatt RF Pulses in Nonlinear Transmission Lines
Author :
Rostov, Vladislav V. ; Bykov, Nikolai M. ; Bykov, Dmitry N. ; Klimov, Alexei I. ; Kovalchuk, Oleg B. ; Romanchenko, Ilya V.
Author_Institution :
Inst. of High Current Electron., Russian Acad. of Sci., Tomsk, Russia
Volume :
38
Issue :
10
fYear :
2010
Firstpage :
2681
Lastpage :
2685
Abstract :
This paper presents the experimental results on the generation of subgigawatt radio frequency (RF) pulses using two types of nonlinear transmission lines (NLTLs). In the high-voltage coaxial lines, we used the following: 1) a periodic gas gap structure and 2) uniformly loaded saturated ferrite with axial bias. The concept of the first line is based on the in-phase composition of RF fields produced by currents in the periodic gas gap structure of the inner conductor. The most stable and efficient narrow-band operation of the system with 12 cylindrical gas gaps (200 kV, 18 ns) was realized at an RF of 1 GHz and an RF power of several hundreds of megawatts. The maximum power conversion reached 10%. The second NLTL lacks spatial dispersion. The self-consistent dynamics of the traveling wave is observed by coherent magnetic switching in ferrites with axial bias. The pulsed voltage driver produced 9-ns pulses of voltage between 110 and 290 kV. With the optimum external magnetic field, the efficiency of energy conversion was 10%. The peak power of oscillations produced on a resistive load was 700 MW. An increase in central frequency from 600 MHz to 1.1 GHz with incident pulse amplitude was found.
Keywords :
coaxial cables; ferrite devices; microwave generation; frequency 1 GHz; high voltage coaxial lines; nonlinear transmission lines; periodic gas gap structure; power 700 MW; subgigawatt RF pulse generation; subgigawatt radio frequency pulses; uniformly loaded saturated ferrite; voltage 110 kV to 290 kV; Coaxial components; Conductors; Ferrites; Narrowband; Periodic structures; Power transmission lines; Pulse generation; Radio frequency; Transmission lines; Voltage; Nonlinear transmission lines (NLTLs); periodic gas gap switches; saturated ferrites;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2010.2048722
Filename :
5473070
Link To Document :
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