Tag: Refereed Publication

  • A Magnetic Trap for Antihydrogen Confinement

    A Magnetic Trap for Antihydrogen Confinement

    The goal of the ALPHA collaboration at CERN is to test CPT conservation by comparing the 1S–2S transitions of hydrogen and antihydrogen. To reach the ultimate accuracy of 1 part in 1018 , the (anti)atoms must be trapped. Using current technology, only magnetic minimum traps can confine (anti)hydrogen. In this paper, the design of the

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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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  • 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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