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量子情報とコンピューティング
1IBM Research Division, T.J. Watson Research Center, Yorktown Heights, New York 10598, USA. bennetc@watson.ibm.com
Nature
|April 5, 2000
まとめ
干渉と絡み合いを含む量子現実は,高度な情報処理の可能性を秘めています. これらの量子効果を活用することで,複雑な問題の解読,コード作成,計算に革命をもたらすことができます.
科学分野:
- 量子情報科学とは,量子情報科学である.
- 理論的コンピュータ科学
背景:
- 古典的な情報処理は,古典的な物理が近似であることに類似して,制限されています.
- 亜原子世界を支配する量子力学は,より完全な現実を提示する.
研究 の 目的:
- 情報処理における量子効果の可能性を調査する.
- 量子現象が実用的に適用される方法を概説する.
主な方法:
- 量子力学の原理の概念分析. 量子力学の原理の概念分析.
- 量子アルゴリズムと暗号学の理論的探求.
主要な成果:
- 干渉や絡み合いなどの量子効果は,現在,情報処理において十分に活用されていない.
- これらの量子現象は,重要な進歩のために活用することができます.
結論:
- 量子リアリティは,古典的な情報処理を超えた強力なパラダイムを提供します.
- 将来のアプリケーションには,コードの解読/作成,および計算の加速が含まれます.
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Sometimes a single EPSP is strong enough to induce an action potential in the postsynaptic neuron. However, multiple presynaptic inputs must often create EPSPs around the same time for the postsynaptic neuron to be sufficiently depolarized to fire an action potential.
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