極化フォノンは,超高速解磁において角運動量を持ちます
S R Tauchert1,2, M Volkov1,2, D Ehberger2
1Universität Konstanz, Fachbereich Physik, Konstanz, Germany.
Nature
|February 3, 2022
まとめ
超高速のレーザーパルスで ニッケルフィルムは 独特で長時間持続するアニゾトロプ的フォノンに刺激され 素早く消磁します この円形に偏ったフォノンは,スピンシステムの角運動量を吸収し,急速な磁気秩序の喪失を説明します.
科学分野:
- 材料科学
- 凝縮物質物理学
- 超高速現象
背景:
- 磁気現象は技術にとって不可欠ですが 磁気秩序の急速な制御は困難です
- 超短波のレーザーパルスで ニッケルのような物質を 磁気から解放し 超高速なスピントロニクスへの道を開くことができます
研究 の 目的:
- ニッケルフィルムの超高速解磁化の背後にあるメカニズムを調査する.
- 急速な磁気秩序の喪失の際に角運動の運命を特定する.
主な方法:
- 超高速の電子微分法を使って 原子のダイナミクスを調べました
- レーザー刺激後の物質特性の時間的進化を分析した.
主要な成果:
- ニッケルにおける高周波アニソトロピックフォノン (150−750 fs) の即時,長時間持続する集団を観察した.
- フォノンアニソトロピーの平面は,午後2時の振動幅で初期磁化に垂直であることを決定した.
- 提案された円状に偏ったフォノンは,スピンシステムからの角運動量を吸収します.
結論:
- 脱磁時間は,フォノン刺激による原子加速と関連しています.
- アインシュタイン・デ・ハース効果の 原子論的な説明を 提供しています
- 非均衡のダイナミクスと相変遷における極化フォノンの重要性を強調する.
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