Title :
The 1 THz gyrotron at Fukui University
Author :
Idehara, T. ; Tsuchiya, H. ; Agusu, La ; Mori, H. ; Murase, H. ; Saito, T. ; Ogawa, I. ; Mitsudo, S.
Abstract :
For application of high frequency gyrotrons to high power THz technologies, we are developing THz CW gyrotron, FU CW Series. Gyrotron FU CW I with 12 T liquid He free superconducting magnert has already been developed applied for material processing, for example, ceramics sintering. The second gyrotron of the series, Gyrotron FU CW II with an 8 T superconducting magnet has been constructed and the operation test was successfully carried out. The gyrotron will used for enhancement of the sensitivity of 600 MHz proton-NMR by use of dynamic nuclear polarization (DNP). The designed operation mode of the gyrotron is TE2,6 at the second harmonic. The corresponding frequency is 394.6 GHz. The real operation frequency is 394.3 GHz at TE06 mode, because of fabrication error of the diameter of the cavity. The operation is in complete C W at the output power of around 30 W or higher at the TE06 cavity mode. There are many other operation modes at the fundamental and the second harmonic. Typical output power of the fundamental and the second harmonic are higher than 100 W and 20 W, respectively. The highest frequency observed up to the present is 443.5 GHz at the second harmonic operation of TE6,5 mode. The measured results are compared with the theoretical consideration. The third gyrotron, Gyrotron FU CW III with 20 T superconducting was just constructed and ther operation test will start soon. Maximum frequency of higher then 1 THz and output power of several hundred watt are expected.
Keywords :
gyrotrons; harmonic analysis; submillimetre wave tubes; superconducting magnets; Fukui University; Gyrotron FU CW I; Gyrotron FU CW II; Gyrotron FU CW III; THz CW gyrotron; cavity mode; frequency 1 THz; frequency 394.3 GHz; frequency 394.6 GHz; frequency 443.5 GHz; high frequency gyrotrons; high power THz technologies; magnetic flux density 12 T; magnetic flux density 20 T; second harmonic; superconducting magnet; Ceramics; Frequency; Gyrotrons; Helium; Materials processing; Power generation; Superconducting magnets; Superconducting materials; Tellurium; Testing; CW operation; DNP-NMR; THz; gyrotron;
Conference_Titel :
Infrared and Millimeter Waves, 2007 and the 2007 15th International Conference on Terahertz Electronics. IRMMW-THz. Joint 32nd International Conference on
Conference_Location :
Cardiff
Print_ISBN :
978-1-4244-1438-3
DOI :
10.1109/ICIMW.2007.4516512