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Quantitative analysis of the deflection of a sodium beam by laser radiation

B. Jaduszliwer, G. F. Shen, and B. Bederson
Phys. Rev. A 33, 3792 – Published 1 June 1986
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Abstract

We have performed experimental and theoretical studies of the deflection of a sodium atomic beam by a laser tuned to the 3 2S1/2,F=2–3 2P3/2,F=3 transition. The intensity profile of the deflected beam was measured at different laser power levels and for different laser polarizations. Calculations using a constant force derived from a two-level atom yield deflections which are too large. The results of more realistic simulation calculations agree very well with the measured deflection. Those calculations incorporate the atomic-beam spatial and velocity distributions as well as the laser frequency distribution and polarization state. Optical pumping, loss of atoms to the nonresonant F=1 ground state, and Doppler shifting of the atoms out of resonance are all considered, as also are the statistics and angular distributions of the spontaneous photons.

  • Received 25 November 1985

DOI:https://doi.org/10.1103/PhysRevA.33.3792

©1986 American Physical Society

Authors & Affiliations

B. Jaduszliwer, G. F. Shen, and B. Bederson

  • Department of Physics, New York University, New York, New York 10003

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Issue

Vol. 33, Iss. 6 — June 1986

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