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| Journal Article | FZJ-2013-00911 |
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2012
Dt. Physikalische Ges.
[Bad Honnef]
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Please use a persistent id in citations: http://hdl.handle.net/2128/4969 doi:10.1088/1367-2630/14/4/045006
Abstract: Positrons accumulated in a room-temperature buffer-gas-cooled positron accumulator are efficiently transferred into a superconducting solenoid which houses the ATRAP cryogenic Penning trap used in antihydrogen research. The positrons are guided along a 9m long magnetic guide that connects the central field lines of the 0.15T field in the positron accumulator to the central magnetic field lines of the superconducting solenoid. Seventy independently controllable electromagnets are required to overcome the fringing field of the large-bore superconducting solenoid. The guide includes both a 15 upward bend and a 105 downward bend to account for the orthogonal orientation of the positron accumulator with respect to the cryogenic Penning trap. Low-energy positrons ejected from the accumulator follow the magnetic field lines within the guide and are transferred into the superconducting solenoid with nearly 100% efficiency. A 7m long5cm diameter stainless-steel tube and a 20mm long, 1.5mm diameter cryogenic pumping restriction ensure that the 10(-')(2)mbar pressure in the accumulator is isolated well from the extreme vacuum required in the Penning trap to allow for long antimatter storage times.
Keyword(s): solenoid: superconductivity ; positron: accumulator ; Penning trap ; cryogenics ; magnetic field: spatial distribution ; ATRAP ; beam transport ; positron: energy spectrum ; performance ; beam optics
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