Particle-in-cell simulation on high-power microwave flashover and breakdown with window outgassing

Author(s):  
Ye Dong ◽  
Zhi-Wei Dong ◽  
Qian-Hong Zhou ◽  
Wen-Yuan Yang ◽  
Hai-Jing Zhou
2014 ◽  
Vol 26 (6) ◽  
pp. 63012
Author(s):  
范壮壮 Fan Zhuangzhuang ◽  
王洪广 Wang Hongguang ◽  
林舒 Lin Shu ◽  
李永东 Li Yongdong ◽  
刘纯亮 Liu Chunliang

2014 ◽  
Vol 63 (2) ◽  
pp. 027901
Author(s):  
Dong Ye ◽  
Dong Zhi-Wei ◽  
Zhou Qian-Hong ◽  
Yang Wen-Yuan ◽  
Zhou Hai-Jing

2018 ◽  
Author(s):  
Ian M. Rittersdorf ◽  
A. Stephen Richardson ◽  
Stephen B. Swanekamp ◽  
Joseph W. Schumer ◽  
Peter Stoltz ◽  
...  

2012 ◽  
Vol 79 (1) ◽  
pp. 69-86 ◽  
Author(s):  
JUN ZHOU ◽  
D. G. LIU ◽  
C. LIAO

AbstractThe CHIPIC code, a fully electromagnetic particle-in-cell (PIC) code for modeling and simulations of high-power microwave (HPM) devices, is introduced in this paper. It consists of a two-dimensional (2D) code and a three-dimensional (3D) code. The 2D code can model and simulate HPM devices with symmetric structure on 2D Cartesian, cylindrical and polar grids, while the 3D code can model and simulate HPM devices on 3D Cartesian and cylindrical grids. The fields are calculated using the finite-difference time-domain scheme, and the particles are described by the PIC scheme. Various types of boundary conditions have also been implemented for different kinds of applications. In addition, the 3D code is specifically designed for high-performance modeling and computing. It uses the message passing interface and the open specifications for multiprocessing (OpenMP) for parallelization. Its parallel design ensures that it is capable of efficiently executing on a variety of architectures. In order to allow efficient use of parallel architectures, it provides automated partitioning and dynamic load balancing. Even though this code is still in development, it has successfully simulated various real-world HPM experimental devices. Simulation results on some typical HPM devices by using the CHIPIC code are given, which agree well with those obtained from some well-known PIC codes. Direction for future work is also presented.


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