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Cooling of gases by laser radiation
Optics Communications · 1975 · Vol. 13(1) · pp. 68–69
T. W. Hänsch✉(Stanford University)A. L. Schawlow(Stanford University)
Abstract
It is shown that a low-density gas can be cooled by illuminating it with intense, quasi-monochromatic light confined to the lower-frequency half of a resonance line's Doppler width. Translational kinetic energy can be transferred from the gas to the scattered light, until the atomic velocity is reduced by the ratio of the Doppler width to the natural line width.
Orbital Angular Momentum in OpticsExperimental and Theoretical Physics StudiesLaser Design and ApplicationsOpticsDoppler effectMonochromatic colorLine widthRadiationLaserResonance (particle physics)Materials scienceLine (geometry)Kinetic energy
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