Matter and Radiation at Extremes, Volume. 6, Issue 4, 045901(2021)
First results from a 760-GW linear transformer driver module for Z-pinch research
Fig. 1. Schematic of M-50 machine comprising 50 identical linear transformer driver (LTD) cavities connected in series. Each cavity can give an output pulse of 90 kV/1 MA on a matched resistive load. The voltage pulses generated by the cavities are summed along the output transmission line, which operates as a magnetically insulated transmission line (MITL). The nominal output of the M-50 machine is 4.5 MV/1.0 MA.
Fig. 2. Photograph of an LTD cavity (left), and typical output current waveform (right). The peak current obtained on a matched resistive load of 90 mΩ is ∼1.05 MA, and the corresponding charge voltage across the capacitors is ±90 kV. The rise time and full width at half maximum of the load current pulse are ∼124 and 312 ns, respectively.
Fig. 3. Schematic of M-50-1 machine. Ten LTD cavities are connected in series.
Fig. 4. Photograph of M-50-1 machine. The total length is ∼3.5 m, including ten LTD cavities and one extended section. Vacuum pumps are mounted at both ends of the machine. During the experiment, the vacuum pressure of the output transmission line section is normally below 5.0 × 10−3 Pa. A pre-magnetizing pulse supplied by discharging a 50-
Fig. 5. Photograph of trigger unit, which comprises a mini-Marx, four 7.5-Ω/75-ns water-insulated pulse-forming lines, four laser-triggered gas switches, and 40 75-Ω output cables.
Fig. 6. Upstream anode current (red), downstream anode current (blue), downstream cathode current (green), and load voltage (black) at a charge voltage of ±85 kV with the radius
Fig. 7. Characterization of electrode surfaces after discharge:
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Lin Chen, Wenkang Zou, Jihao Jiang, Liangji Zhou, Bing Wei, Fan Guo, An He, Weiping Xie, Jianjun Deng, Meng Wang, Jie Wang, Yuanjun Zhang. First results from a 760-GW linear transformer driver module for Z-pinch research[J]. Matter and Radiation at Extremes, 2021, 6(4): 045901
Category: Inertial Confinement Fusion Physics
Received: Jan. 31, 2020
Accepted: May. 3, 2021
Published Online: Jul. 28, 2021
The Author Email: Guo Fan (394560789@qq.com)