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Plasma heating by high-energy-content microsecond electron beam at the GOL-3-II facility

M A Agafonov, A V Arzhannikov, V T Astrelin, V B Bobylev, A V Burdakov, M N Chagin, P V Denisenko, Yu I Deulin, A D Khilchenko, V S Koidan1996年Plasma Physics and Controlled FusionIF 2.2出版社

A description of the GOL-3-II facility and the first experimental results obtained on this new device are presented. This facility was constructed as part of the second stage of the GOL-3 programme for studying the interaction of microsecond electron beams with a plasma and its fast heating. The plasma column of the GOL-3-II facility is 12 m in length instead of 7 m for the first stage of GOL-3. The energy content of the capacitive storage for magnetic field supply has been increased from 10 MJ to 15 MJ. This allows us to have a magnetic field of up to 5 T in the homogeneous part of the solenoid and up to 10 T in its end mirrors. The expected key feature of the upgrading is an essential increase in the energy content of the electron beam injected into the plasma. The high-power electron beam generator U-2 is now used for the new beam - plasma interaction experiments with possible beam energy content of up to 0.3 MJ. It is shown experimentally that transportation of a 0.2 MJ electron beam through the 12 m plasma column is possible under conditions of almost full current neutralization. The collective beam - plasma interaction results in a plasma heating of up to 1 - 2 keV electron temperature at density.

日本語訳

GOL-3-II装置の説明と、この新装置で得られた最初の実験結果について述べる。本装置は、マイクロ秒電子ビームとプラズマとの相互作用およびその高速加熱を研究するためのGOL-3計画の第二段階として建設された。GOL-3-II装置のプラズマ柱の長さは、第一段階のGOL-3の7mに代わり12mである。磁場供給用の容量性エネルギー貯蔵装置のエネルギー量は10MJから15MJに増加した。これにより、ソレノイドの均一部では最大5T、ミラー部では最大10Tの磁場が得られる。アップグレードの主な特徴は、プラズマに入射する電子ビームのエネルギー量が本質的に増加したことである。新たなビーム・プラズマ相互作用実験には、最大0.3MJのビームエネルギーを有する大出力電子ビーム発生装置U-2が使用される。0.2MJの電子ビームが12mのプラズマ柱を、ほぼ完全な電流中和条件下で輸送可能であることが実験的に示された。集団的ビーム・プラズマ相互作用により、密度 においてプラズマは1〜2keVの電子温度まで加熱される。

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Electron beamsPlasma heating
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