APEX-LD:陽電子・電子実験のためのコンパクトな浮遊ダイポール磁場の設計と運用
A Card1,2, M R Stoneking3, A Deller1,4
1Max Planck Institute for Plasma Physics, 85748 Garching, Germany.
The Review of scientific instruments
|February 2, 2026
まとめ
APEX-LD装置は、超伝導コイルを3時間以上にわたって安定して浮遊させることに成功しました。これにより、磁気閉じ込めを用いた陽電子・電子プラズマの研究が可能になります。
科学分野:
- プラズマ物理学
- 超伝導磁石技術
背景:
- 陽電子・電子対プラズマは、基礎物理学研究にとって重要です。
- 磁気閉じ込めは、これらのプラズマを研究する上での重要な課題です。
研究 の 目的:
- 陽電子・電子プラズマを閉じ込めるための浮遊ダイポールトラップ(APEX-LD)を構築・試験すること。
- 超伝導浮遊コイルの安定性と堅牢性を実証すること。
主な方法:
- レアアース・バリウム・カッパー・オキサイドを用いた磁気浮遊式超伝導浮遊(F)コイルの構築。
- クライオスタットを用いたFコイルの冷却と誘導充電。
- コイルの浮遊と安定性の実証。
主要な成果:
- 垂直安定性20μm未満で3時間を超える安定した浮遊を実現しました。
- 約60kAターンの永久電流と約0.5Tの軸方向磁束密度を生成しました。
- Fコイルは、クエンチや衝撃に対して顕著な堅牢性を示しました。
結論:
- APEX-LDシステムは、プラズマの磁気閉じ込めのための実行可能なプラットフォームです。
- 堅牢な超伝導コイル設計は、要求の厳しい実験条件に適しています。
- 予備的な電子実験は、将来の陽電子注入とプラズマ研究への道を開きます。
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