Laser-cooling and electromagnetic trapping of neutral atoms
William D. Phillips, Alan L. Migdall, H. Metcalf
Abstract
William D. Phillips, Alan L. Migdall, H. Metcalf
Abstract
Until recently it has been impossible to confine and trap neutral atoms using electromagnetic fields. While many proposals for such traps exist, the small potential energy depth of the traps and the high kinetic energy of available atoms prevented trapping. We review various schemes for atom trapping, the advances in laser cooling of atomic beams which have now made trapping possible, and the successful magnetic trapping of cold sodium atoms.
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Until recently it has been impossible to confine and trap neutral atoms using electromagnetic fields. While many proposals for such traps exist, the small potential energy depth of the traps and the high kinetic energy of available atoms prevented trapping. We review various schemes for atom trapping, the advances in laser cooling of atomic beams which have now made trapping possible, and the successful magnetic trapping of cold sodium atoms.
Key concepts: Trapping, Energetic neutral atom, Laser cooling, Atomic physics, Kinetic energy, Laser, Atom (system on chip), Atom optics