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Preparing an Isotopically Pure 229Th Ion Beam for Studies of 229mTh
Published on: May 3, 2019
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229Th核時計の移行を直接検出する
Lars von der Wense1, Benedict Seiferle1, Mustapha Laatiaoui2,3
1Ludwig-Maximilians-Universität München, 85748 Garching, Germany.
Nature
|May 6, 2016
まとめ
研究者は,超精密な核時計の開発に向けた重要なステップであるトーリウム-229核同位体 ((229m) Th) を直接検出しました. この発見は,同位体
科学分野:
- 核物理学
- メトロロジー
- 原子と分子物理学
背景:
- 光学的な原子時計は,現在の最先端の時間と周波数測定を表しています.
- 原子力時計は,核の移行を利用し,優れた精度の可能性を秘めています.
- トリウム-229 ((229m) Th) のイソメア最初の興奮状態は,現在の技術で核時計の唯一の候補である.
研究 の 目的:
- トリウム-229 ((229m) Th) のイソメア最初の興奮状態を直接検出する.
- (229m) Th同位体の存在を確認する
- 核時計の開発のための分解パラメータの正確な測定のための基礎を築く.
主な方法:
- 核状態の直接検出 (229m) Th
- アイソメアのエネルギーと半減期の特徴.
主要な成果:
- (229m) Th核の直接検出に成功しました.
- (229m) Th同位体の存在を確認した.
- 限られた同位体エネルギー範囲は6. 3~18. 3 eVであり, (229m) Th2+の半減期は60秒を超える.
結論:
- 直接検出は (229m) Th同位体の重要な証拠を提供します.
- この結果は,腐敗のパラメータの正確な研究への道を開きます.
- この研究は,核周波数標準の開発に向けた重要な一歩です.
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