A gyrating electron beam source for frequency tunable, 200GHz gyrotron

被引:4
作者
Kumar, Nitin [1 ]
Singh, Udaybir [1 ]
Bera, Anirban [1 ]
Sinha, A. K. [1 ]
机构
[1] Cent Elect Engn Res Inst, Gyrotron Lab, Microwave Tube Area, CSIR, Pilani, Rajasthan, India
关键词
MIG; gyrotron; electron beam; magnet system; DYNAMIC NUCLEAR-POLARIZATION; MAGNETRON INJECTION GUN; DESIGN; GHZ; OSCILLATOR; NMR;
D O I
10.1080/09205071.2017.1349001
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Magnetron injection gun (MIG) is an important and critical part of any gyrotron. The overall performance of gyrotron deeply depends on the quality of gyrating electron beam. In this article, the design of triode type magnetron injection gun for 200GHz frequency tunable gyrotron is discussed. It is planned to design and develop a 200GHz gyrotron for 300MHz DNP-NMR spectroscopy. The triode MIG is designed in such a way that it can be used in 200GHz gyrotron of higher RF power for other applications also such as electron spin resonance, imaging. First, geometrical and electrical parameters of MIG are calculated using trade-off and scaling equations. Based on the calculated parameters, further, electron beam trajectory simulations are performed in EGUN. The geometry of electrodes are optimized through numerous simulation iterations to achieve the required beam parameters, such as, minimum spread in velocity and guiding center radius, an optimum value of velocity ratio (1.3-1.5), guiding center radius as per the maximum beam-wave coupling strength. The magnet system is designed to achieve the smooth Gaussian type of magnetic field profile with peak value of 7.35 T at cavity center. Further detail parametric analyses are performed which would be helpful in the frequency tuning and long-time stable operation of gyrotron device.
引用
收藏
页码:1947 / 1958
页数:12
相关论文
共 32 条
[1]  
[Anonymous], P 37 INT C INFR MILL
[2]   MAGNETRON INJECTION GUN (MIG) DESIGN FOR GYROTRON APPLICATIONS [J].
BAIRD, JM ;
LAWSON, W .
INTERNATIONAL JOURNAL OF ELECTRONICS, 1986, 61 (06) :953-967
[3]   250 GHz CW gyrotron oscillator for dynamic nuclear polarization in biological solid state NMR [J].
Bajaj, Vikram S. ;
Hornstein, Melissa K. ;
Kreischer, Kenneth E. ;
Sirigiri, Jagadishwar R. ;
Woskov, Paul P. ;
Mak-Jurkauskas, Melody L. ;
Herzfeld, Judith ;
Temkin, Richard J. ;
Griffin, Robert G. .
JOURNAL OF MAGNETIC RESONANCE, 2007, 189 (02) :251-279
[4]   Characteristics and applications of fast-wave gyrodevices [J].
Felch, KL ;
Danly, BG ;
Jory, HR ;
Kreischer, KE ;
Lawson, W ;
Levush, B ;
Temkin, RJ .
PROCEEDINGS OF THE IEEE, 1999, 87 (05) :752-781
[5]   Generation of 1.5-kW, 1-THz coherent radiation from a gyrotron with a pulsed magnetic field [J].
Glyavin, M. Yu. ;
Luchinin, A. G. ;
Golubiatnikov, G. Yu. .
PHYSICAL REVIEW LETTERS, 2008, 100 (01)
[6]   Review of high-power microwave source research [J].
Gold, SH ;
Nusinovich, GS .
REVIEW OF SCIENTIFIC INSTRUMENTS, 1997, 68 (11) :3945-3974
[7]   High field dynamic nuclear polarization-the renaissance [J].
Griffin, R. G. ;
Prisner, T. F. .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2010, 12 (22) :5737-5740
[8]  
HERMANNSFELDT WB, 1979, SLAC226
[9]   Continuous-wave operation of a 460-GHz second harmonic gyrotron oscillator [J].
Hornstein, Melissa K. ;
Bajaj, Vikram S. ;
Griffin, Robert G. ;
Temkin, Richard J. .
IEEE TRANSACTIONS ON PLASMA SCIENCE, 2006, 34 (03) :524-533
[10]   Development of frequency tunable, medium power gyrotrons (Gyrotron FU series) as submillimeter wave radiation sources [J].
Idehara, T ;
Ogawa, I ;
Mitsudo, S ;
Pereyaslavets, M ;
Nishida, N ;
Yoshida, K .
IEEE TRANSACTIONS ON PLASMA SCIENCE, 1999, 27 (02) :340-354