超伝導ダイオード効果の観測
Fuyuki Ando1, Yuta Miyasaka1, Tian Li1
1Institute for Chemical Research, Kyoto University, Kyoto, Japan.
Nature
|August 21, 2020
まとめ
研究者は[Nb/V/Ta]nの超伝導ダイオードを使用して,磁気制御可能な超伝導ダイオードを開発した. この装置は,一方向にゼロ抵抗を示し,将来の電子回路のための非分散電荷輸送を可能にします.
科学分野:
- 凝縮物質物理学
- 量子電子
- 材料科学
背景:
- 非線形光学および電気的効果は空間逆対称性の破裂によって生じ,方向選択的な粒子輸送を可能にします.
- 半導体ダイオードは非互換抵抗を示すが,有限抵抗によるエネルギー損失を被る.
研究 の 目的:
- 超伝導ダイオードを実現し,従来のダイオードのエネルギー損失の制限を克服します.
- 超伝導ダイオードを磁気的に制御する 超伝導ダイオードを人工的な超網構造で制御する
主な方法:
- 逆転の中心がない人工的な超格子 [Nb/V/Ta]nの製造.
- 超伝導から正常に移行する時の電流に対する抵抗を観察するための直流測定.
主要な成果:
- 超伝導状態のダイオードの振る舞いを示す非相互抵抗曲線の観察.
- 非相互の臨界電流による[Nb/V/Ta]nスーパーグリッドにおける一方向のゼロ抵抗の実証.
- 空間逆転と時間逆転の対称性を破った磁気キラルアニソトロピーによる効果の帰属.
結論:
- 開発された超伝導ダイオードは,相相一致で方向選択的な電荷輸送を可能にします.
- この突破は 散らばらない電子回路の構築の道を開きます
- この研究は,新しい電子機能のためのエンジニアリングされたスーパーグリットの可能性を強調しています.
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