3-D em PIC simulation study on low-frequency oscillation in a fusion gyrotron

초록

In a previous study, it was found that not only magnetic compression profile but initial thermal velocities of electrons play an important role in causing a low frequency oscillation (LFO) in the operation of a magnetron injection gun (MIG) employed in an MIT fusion gyrotron. An unphysical particle boundary condition, i.e., large initial thermal velocities of electrons, had to be assumed to produce the LFO in the 3-D electromagnetic (EM) particle-in-cell (PIC) simulation. In this work, we have included the gyrotron cavity along with the MIG as well as a large vacuum envelope representing the vacuum chamber similar to that employed in the MIT experiments. In the EM PIC simulation, it is found that the momentum of electrons is suppressed by the space charge due to the vacuum envelope. For the first time, without unphysical approximations, the LFO could be reproduced in the time domain EM PIC simulations. The initial velocity spread at the cathode temperature is assumed in this simulation in contrast to an unphysical larger velocity spread formerly used.

제목
3-D em PIC simulation study on low-frequency oscillation in a fusion gyrotron
저자
Lin, M.-C.Smithe, D.N.
DOI
10.1109/IVEC.2019.8744759
발행일
2019-04-29
학회명
2019 International Vacuum Electronics Conference (IVEC)
개최지
Paradise Hotl Busan
개최국가
대한민국
학회 개최일
2019-04-28 ~ 2019-05-01