2次元の超流体における乱流による大規模な流れの進化
Shaun P Johnstone1, Andrew J Groszek2, Philip T Starkey2
1School of Physics and Astronomy, Monash University, Victoria 3800, Australia. shaun.johnstone@monash.edu kristian.helmerson@monash.edu.
まとめ
研究者は,超流体ボース-アインシュタイン凝縮体における逆エネルギーカスケードを観測することによって,ラース・オンサガーの統計的水力力学モデルを実験的に確認した. この研究は,不均衡の量子システムにおける新興の大規模構造と 負の絶対温度を明らかにします
科学分野:
- 量子水力学
- 統計的メカニズム
- 凝縮物質物理学
背景:
- 相互作用するバランスのないシステムは 大規模な構造を形成できます
- 2次元の乱流は 持続的な大規模な渦を呈する.
- ラース・オンサガーは,量子化された渦の統計的水力学モデルを提案した.
研究 の 目的:
- 実験的に Onsager の統計的水力学モデルを確認します.
- 不均衡の量子システムにおける新興構造を調査する.
- 逆のエネルギーカスケードと 負の絶対温度を探る
主な方法:
- 格子バリアを引っ張って,超流動ボース-アインシュタイン凝縮液で非均衡渦分布を生成した.
- 逆のエネルギーのシグネチャーを観測した.
- 測定した安定状態の構成.
主要な成果:
- 実験的に Onsager のモデルを確認しました.
- 渦の蒸発式加熱によって 逆のエネルギーカスケードが観測されました
- 絶対温度がマイナスで安定状態の設定を達成しました.
結論:
- この研究は,超流体ボース-アインシュタイン凝縮体におけるオンサガーのモデルの実験的証拠を提供します.
- 均衡状態から遠ざかっている量子システムで 発生する大規模な構造を証明した.
- 不均衡の量子現象の 定量的な研究への道を開いた
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