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Zeeman deceleration of electron-impact-excited metastable helium atoms

Published 19 Jan 2015 in physics.atom-ph and physics.chem-ph | (1501.04589v1)

Abstract: We present experimental results that demonstrate - for the first time - the Zeeman deceleration of helium atoms in the metastable 23S_1state. A more than 40% decrease of the kinetic energy of the beam is achieved for deceleration from 490 m/s to a final velocity of 370 m/s. Metastable atom generation is achieved with an electron-impact-excitation source whose performance is enhanced through an additional discharge-type process which we characterize in detail. Comparison of deceleration data at different electron beam pulse durations confirms that a matching between the initial particle distribution and the phase-space acceptance of the decelerator is crucial for the production of a decelerated packet with a well-defined velocity distribution. The experimental findings are in good agreement with three-dimensional numerical particle trajectory simulations.

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