4.8 Article

Vortex beams of atoms and molecules

期刊

SCIENCE
卷 373, 期 6559, 页码 1105-+

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AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.abj2451

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  1. European Research Council H2020 Program
  2. Minerva Foundation

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This study demonstrates the generation of vortex beams of atoms and molecules by diffracting supersonic beams of helium atoms and dimers off transmission gratings. The method is general and could be applied to most atomic and molecular gases, providing new insights and possibilities in atomic physics.
Angular momentum plays a central role in quantum mechanics, recurring in every length scale from the microscopic interactions of light and matter to the macroscopic behavior of superfluids. Vortex beams, carrying intrinsic orbital angular momentum (OAM), are now regularly generated with elementary particles such as photons and electrons. Thus far, the creation of a vortex beam of a nonelementary particle has never been demonstrated experimentally. We present vortex beams of atoms and molecules, formed by diffracting supersonic beams of helium atoms and dimers off transmission gratings. This method is general and could be applied to most atomic and molecular gases. Our results may open new frontiers in atomic physics, using the additional degree of freedom of OAM to probe collisions and alter fundamental interactions.

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