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Absorption imaging of a single atom

机译:单个原子的吸收成像

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Absorption imaging has played a key role in the advancement of science from van Leeuwenhoek's discovery of red blood cells to modern observations of dust clouds in stellar nebulas and Bose–Einstein condensates. Here we show the first absorption imaging of a single atom isolated in a vacuum. The optical properties of atoms are thoroughly understood, so a single atom is an ideal system for testing the limits of absorption imaging. A single atomic ion was confined in an RF Paul trap and the absorption imaged at near wavelength resolution with a phase Fresnel lens. The observed image contrast of 3.1 (3)% is the maximum theoretically allowed for the imaging resolution of our set-up. The absorption of photons by single atoms is of immediate interest for quantum information processing. Our results also point out new opportunities in imaging of light-sensitive samples both in the optical and X-ray regimes.. ? 2012 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:从范·列文虎克(van Leeuwenhoek)的红细胞发现到现代观测恒星云和玻色-爱因斯坦凝结物中尘埃云的过程中,吸收成像在科学发展中发挥了关键作用。在这里,我们显示了真空中分离出的单个原子的首次吸收成像。原子的光学性质已被彻底理解,因此单个原子是测试吸收成像极限的理想系统。将单个原子离子限制在RF Paul阱中,并使用相菲涅耳透镜以近波长分辨率对吸收成像。所观察到的图像对比度为3.1(3)%,这是我们设置的成像分辨率理论上允许的最大值。单个原子吸收光子是量子信息处理的紧迫关注。我们的结果还指出了在光学和X射线方案下对光敏样品成像的新机会。 2012自然出版集团,麦克米伦出版社有限公司的一个部门。版权所有。

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