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Buffer-Gas Trap for the NEPOMUC High-Intensity Positron Beam.

POSTER

Abstract

Buffer-gas positron traps have dramatically extended the scope for atomic and non-neutral plasma physics experiments involving positrons. In these devices, a continuous beam of positrons is magnetically guided into a Penning-Malmberg trap, wherein inelastic collisions with low-density molecular gases allow for efficient capture in a single pass. The APEX collaboration aims to produce a neutral pair plasma, comprised of equal quantities of electrons and positrons, confined by the magnetic field of a levitated dipole. More than $10^10$ positrons are needed to achieve a short-Debye-length plasma with a volume of 10 litres and a temperature $< 1$~eV, which necessitates new advances in positron accumulation. We present our plans for the installation of a buffer-gas trap at the NEPOMUC neutron-induced positron source in Munich. Beyond the pair plasma experiments, an intense trap-based positron beam will also facilitate new applications in positron materials interactions.

Presenters

  • James R Danielson

    UCSD

Authors

  • James R Danielson

    UCSD

  • A. Deller

    Max Planck Institute for Plasma Physics, IPP

  • E. V. V Stenson

    Max Planck Institute for Plasma Physics, IPP

  • M. Singer

    Max Planck Institute for Plasma Physics, IPP

  • S. Nissl

    Max Planck Institute for Plasma Physics, IPP

  • C. W. Rogge

    Technische Universität München, TUM

  • Matthew R Stoneking

    Lawrence University, Lawrence

  • C. Hugenschmidt

    Technische Universität München, TUM

  • Thomas Sunn S Pedersen

    Max Planck Institute for Plasma Physics, IPP

  • Clifford M Surko

    University of California, San Diego, UCSD