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Research on current filament mechanism of nonlinear semi-insulation GaAs photoconductive semiconductor switches

POSTER

Abstract

With the rapid development of pulsed power technology, the GaAs photoconductive semiconductor switch (PCSS) with power and band width arouses broad attention. On the nonlinear mode, the current filament phenomena will occur in the GaAs PCSS. Because the phenomena are so complicated and uncertain, up to now the latent mechanism is not very clear.

The paper proposes a new streamer model to explain current filament phenomenon. The model includes three aspects: the streamer generation, the streamer development and the streamer flowing through PCSS. There are two conditions for streamer formation: one is the carrier density which should be not less than 1017cm-3, and another is the electric field which should be much higher than 250 kV/cm. Avalanche ionization and compound radiation are the physical factors of the streamer development. When the current filament flows through PCSS, Lock-on effect is caused by dynamic distribution of transient voltages of PCSS and the load. On a micro level, Lock-on effect is caused by dynamic change of production rate and recombination rate of carries. Based on this streamer mode, the current filament velocity is calculated as about 2×108cm/s. Then the current filament phenomenon is explained by Franz-Keldysh effect.

Publication: ?1?Cheng Ma, Wei Shi, Mengxia Li, Huaimeng Gui, Luyi Wang, Huan Jiang, Zhanglong Fu, and Juncheng Cao. Research on Flashover Characteristics and the Physical Mechanism of High-Gain GaAs Photoconductive Switches[J]. IEEE Journal of Quantum Electronics, 2014, 50(7):568-574.<br>?2?Cheng Ma, Lei Yang, Shaoqiang Wang, Yu Ji, Lin Zhang, Wei Shi. Study of the Lifetime of High-Power GaAs PCSSs Under Different Energy Storage Modes [J]. IEEE Trans.Power Electron., 2017, 32(6): 4644-4651<br>?3?Kim Y P, Ryu J, Baek S H, et al. Output characteristics of GaAs photoconductive semiconductor switch at high bias voltages[C]. Compound Semiconductor Week. IEEE, 2016:1-1.

Presenters

  • Cheng Ma

    Xi'an University of Technology

Authors

  • Cheng Ma

    Xi'an University of Technology

  • Wei Shi

    Xi 'an University of Technology, Xi'an University of Technology and The Key Laboratory of Ultrafast Photoelectric Technology and Terahertz Science in Shaanxi

  • Lei Hou

    Xi'an University of Technology

  • Hong Liu

    Xi'an University of Technology

  • Yue Wang

    Xi'an University of Technology

  • Liqiang Tian

    Xi'an University of Technology

  • Lei Yang

    Xi'an University of Technology

  • Meilin Wu

    Xi'an University of Technology

  • Hui Liu

    Xi'an University of Technology

  • Zhiyuan Chen

    Xi'an University of Technology