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Article Dans Une Revue The European Physical Journal D : Atomic, molecular, optical and plasma physics Année : 2001

An atom faucet

W. Wohlleben
  • Fonction : Auteur
K.W. Madison
  • Fonction : Auteur
Jean Dalibard

Résumé

We have constructed and modeled a simple and efficient source of slow atoms.
From a background vapour loaded magneto-optical trap, a thin laser beam extracts a continuous jet of cold rubidium atoms. In this setup, the extraction column that is typical to leaking MOT systems is created without any optical parts placed inside the vacuum chamber. For detailed analysis, we present a simple 3D numerical simulation of the atomic motion in the presence of multiple saturating laser fields combined with an inhomogeneous magnetic field. At a pressure of $P_{\rm Rb87}=1 \times 10^{-8}$ mbar, the moderate laser power of 10 mW per beam generates a jet of flux $\Phi =1.3\times 10^8$ atoms/s with a mean velocity of 14 m/s and a divergence of $<20$ mrad.

Dates et versions

hal-00002533 , version 1 (13-08-2004)

Identifiants

Citer

W. Wohlleben, Frédéric Chevy, K.W. Madison, Jean Dalibard. An atom faucet. The European Physical Journal D : Atomic, molecular, optical and plasma physics, 2001, 15, pp.237-244. ⟨hal-00002533⟩
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