Crystal deflector for highly efficient channeling extraction of a proton beam from accelerators
V.M. Biryukov, Yu. A. Chesnokov, V. Guidi, Vladilen I. Kotov, Cesare Malagu', Giuliano Martinelli, W. Scandale, Marco Stefancich, D. Vincenzi
Abstract
V.M. Biryukov, Yu. A. Chesnokov, V. Guidi, Vladilen I. Kotov, Cesare Malagu', Giuliano Martinelli, W. Scandale, Marco Stefancich, D. Vincenzi
Abstract
The design and manufacturing details of a new crystal deflector for proton beams are reported. The technique allows one to manufacture a very short deflector along the beam direction (2 mm). Thanks to that, multiple encounters of circulating particles with the crystal are possible with a reduced probability of multiple scattering and nuclear interactions per encounter. Thus, drastic increase in efficiency for particle extraction out of the accelerator was attained (85%) on a 70 GeV proton beam. We show the characteristics of the crystal deflector and the technology behind it.
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The design and manufacturing details of a new crystal deflector for proton beams are reported. The technique allows one to manufacture a very short deflector along the beam direction (2 mm). Thanks to that, multiple encounters of circulating particles with the crystal are possible with a reduced probability of multiple scattering and nuclear interactions per encounter. Thus, drastic increase in efficiency for particle extraction out of the accelerator was attained (85%) on a 70 GeV proton beam. We show the characteristics of the crystal deflector and the technology behind it.
Key concepts: Proton, Beam (structure), Crystal (programming language), Particle accelerator, Extraction (chemistry), Materials science, Scattering, Particle (ecology)