Tag: Publication

  • Antihydrogen from merged plasmas – cold enough to trap?

    Antihydrogen from merged plasmas – cold enough to trap?

    The merging of antiprotons with a positron plasma is the predominant and highest efficient method for cold antihydrogen formation used to date [1, 2, 3]. We present experimental evidence that this method has serious disadvantages for producing antihydrogen cold enough to be trapped [4, 5]. Antihydrogen is neutral but may be trapped in a magnetic

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  • Greb om antibrint

    Greb om antibrint

    I efteråret 2002 lykkedes det for første gang forskere at fremstille koldt antistof i form af antibrint-atomer. Nu vil forskerne så forsøge at fange disse antiatomer. Men hvordan fanger man noget, der tilintetgøres så snart det kommer i kontakt med almindeligt stof? Go directly to

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  • Probing the Antiworld

    Probing the Antiworld

    Half a century since the discovery of the antiproton, and more than 70 years since that of the positron, researchers at CERN can routinely produce millions of antihydrogen atoms. Mike Charlton and Jeffrey Hangst explain how these remarkable anti-atoms could be our best bet for understanding one of the most fundamental symmetries of nature. Go

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  • Effects of extreme magnetic quadrupole fields on Penning Traps, and the consequences for antihydrogen trapping

    Effects of extreme magnetic quadrupole fields on Penning Traps, and the consequences for antihydrogen trapping

    Measurements on electrons confined in a Penning trap show that extreme quadrupole fields destroy particle confinement. Much of the particle loss comes from the hitherto unrecognized ballistic transport of particles directly into the wall. The measurements scale to the parameter regime used by ATHENA and ATRAP to create antihydrogen, and suggest that quadrupoles cannot be

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  • The ALPHA Experiment: A Cold Antihydrogen Trap

    The ALPHA Experiment: A Cold Antihydrogen Trap

    The ALPHA experiment aims to trap antihydrogen as the next crucial step towards a precise CPT test, by a spectroscopic comparison of antihydrogen with hydrogen. The experiment will retain the salient techniques developed by the ATHENA collaboration during the previous phase of antihydrogen experiments at the antiproton decelerator (AD) at CERN. The collaboration has identified

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  • Antihydrogen on tap

    Antihydrogen on tap

    Plentiful quantities of antihydrogen, the bound state system of the antiparticles the positron and the antiproton, have recently been made under very controlled conditions in experiments at the European Laboratory of Particle Physics (CERN) near Geneva. In this article I describe how that was done, and why. Go directly to

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