HIT-Shabanov Collaboration
ID: hit-shabanov-plasmoid-control
Summary
Harbin Institute of Technology (HIT, a 'Seven Sons' military university) co-authored papers with G.D. Shabanov of the Petersburg Nuclear Physics Institute (PINP) in 2021-2022, demonstrating electromagnetic steering and gating of Gatchina discharge plasmoids. The collaboration was funded by China's NSFC (¥640,000). The 2022 paper showed that EM fields can change plasmoid motion direction or block formation entirely. This represents direct Chinese-Russian military-relevant plasma technology transfer.
Deep Dive Analysis
The HIT-PINP collaboration produced two key papers: (1) 2021 — 'A study of the dynamics of formation of plasmoids in the Gatchina discharge' (Technical Physics Vol. 66, Issue 9, pp. 1058-1071, DOI: 10.1134/S1063784221070173), and (2) 2022 — 'Effect of Magnetic and Electric Fields on the Dynamics of Plasmoid Formation in the Gatchina Discharge' (Technical Physics Vol. 67, Issue 3, pp. 171-189, DOI: 10.1134/S1063784222030069). Authors include Shixin ZHAO and Chengxun YUAN (HIT), A.A. KUDRYAVTSEV and O.M. ZHEREBTSOV (St. Petersburg State University), and G.D. SHABANOV (PINP/Kurchatov Institute). Funding: NSFC Grant 11775062 (¥640,000, PI: Yuan Chengxun). HIT has formal partnerships with multiple Russian institutions. The Gatchina discharge operates in normal laboratory atmosphere, producing plasmoids with 100-500 ms lifetime and up to 20 cm diameter — directly relevant to atmospheric plasma orb survival.
Key Findings
- ▸ The HIT-PINP collaboration produced two key papers: (1) 2021 — 'A study of the dynamics of formation of plasmoids in the Gatchina discharge' (Technical Physics Vol.
- ▸ 1134/S1063784221070173), and (2) 2022 — 'Effect of Magnetic and Electric Fields on the Dynamics of Plasmoid Formation in the Gatchina Discharge' (Technical Physics Vol.
- ▸ Authors include Shixin ZHAO and Chengxun YUAN (HIT), A.
Citations (3)
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