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大型の機械的振動器の安定した絡み合い
C F Ockeloen-Korppi1, E Damskägg1, J-M Pirkkalainen1
1Department of Applied Physics, Aalto University, Aalto, Finland.
Nature
|April 27, 2018
まとめ
科学者たちは 巨大なマクロスコープの物体,特に2つのマイクロメカニカルオシレータの 量子絡み合いを実現しました この突破は量子現象を より大きなスケールに拡張し 新しい量子技術と 基礎物理学の研究への道を開きます
科学分野:
- 量子物理学
- 顕微鏡量子現象について
- 量子技術
背景:
- 量子エンタグリングは 距離に関係なく システムを結びつけます これは量子技術にとって 極めて重要です
- 顕微鏡システム (光子,イオン,スピン) と装置で示された絡み合い.
- 環境の脆弱性により 顕微鏡の物体の動きを 捉えることは困難です
研究 の 目的:
- 実験的にマクロオブジェクトの質量中心運動の絡み合いを示します.
- マクロスコープの絡み合いを克服する
主な方法:
- 2つの巨大なマイクロメカニカルオシレータ (約. 10^12の原子がそれぞれ存在する.
- 振動器をマイクロ波周波数の電磁波に結合した.
- 相関する機械的変動と微波分析による安定状態の絡み合いを推論した.
主要な成果:
- マクロスコープの振動器の重心運動の 絡み合いを成功裏に作成し,安定させました.
- 間接的な測定技術を用いて安定状態での絡み合いを証明した.
結論:
- 量子絡みを示す物理システムの範囲を 質的に拡張した.
- 量子情報処理,精度測定,基本的な物理学の影響
- 量子力学をより大きなスケールで 探求するための新しい道を開きます
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