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arxiv: quant-ph/0207133 · v1 · pith:KUIC2DT6new · submitted 2002-07-23 · 🪐 quant-ph

Doppler cooling to the recoil limit using sharp atomic transitions

classification 🪐 quant-ph
keywords coolingdopplerlimitrecoilcorrectlyequationfokker-planckprocess
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In this paper, we develop an analytical approach to Doppler cooling of atoms by one- or two-photon transitions when the natural width of the excited level is so small that the process leads to a Doppler temperature comparable to the recoil temperature. A ``quenching'' of the sharp line is introduced in order to allow control of the time scale of the problem. In such limit, the usual Fokker-Planck equation does not correctly describe the cooling process. We propose a generalization of the Fokker-Planck equation and derive a new model which is able to reproduce correctly the numerical results, up to the recoil limit. Two cases of practical interest, one-photon Doppler cooling of strontium and two-photon Doppler cooling of hydrogen are considered.

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