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MANIPULATION OF AN ATOMIC BEAM BY A COMPUTER-GENERATED HOLOGRAM

机译:用计算机生成的全息图操纵原子束

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摘要

TECHNIQUES for manipulating neutral atoms are valuable tools for the investigation of surfaces, acid hold promise for the fabrication of atomic structures for technological applications. The ability to position individual atoms with the accuracy of a crystal lattice constant has been demonstrated(1) using the scanning tunnelling microscope (STM). On the other hand, manipulation with lasers offers a means of controlling atoms in bulk, although it lacks the positional accuracy of the STM. The ability to generate ultra-cold atoms(2-5) using lasers has opened new possibilities: because of their long de Broglie wavelengths, cold atoms are amenable to interferometric manipulation, such as deflection by a grating(6,7) and focusing by a Fresnel lens(8). Here we demonstrate a potentially more flexible approach to atomic manipulation based on holographic principles. We pass a beam of ultra-cold metastable neon atoms through a computer-generated hologram that encodes the Fourier transform of a desired atomic pattern. Diffraction of the atomic beam by the hologram then reconstructs the pattern, in a manner analogous to optical holography. This approach should in principle enable the imposition of arbitrary intensity and phase information onto an atomic beam. [References: 11]
机译:操纵中性原子的技术是研究表面的有价值的工具,酸有望为技术应用制造原子结构。使用扫描隧道显微镜(STM)证明了以晶格常数精度定位单个原子的能力(1)。另一方面,尽管缺乏STM的定位精度,但用激光进行操作提供了一种控制整体原子的方法。利用激光产生超冷原子(2-5)的能力开辟了新的可能性:由于其长的布罗意波长,冷原子适合干涉测量操作,例如通过光栅(6,7)偏转和通过菲涅耳透镜(8)。在这里,我们展示了一种基于全息原理的潜在更灵活的原子操纵方法。我们将一束超冷的亚稳态氖原子穿过计算机生成的全息图,该全息图对所需原子图案的傅立叶变换进行编码。全息图对原子束的衍射然后以类似于光学全息图的方式重构图案。原则上,这种方法应该能够将任意强度和相位信息强加到原子束上。 [参考:11]

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