Volume reflection predicted in the mid-1980s by Taratin and Vorobiev has been observed for the first time in the interactions of a 70 GeV proton beam with a short bent crystal. Incident protons deviate from convex atomic planes in the bulk of the crystal as a result of coherent interaction with bent lattice around the tangency point of particle trajectory with a curved atomic plane. The deflection angle 2Î R was found to be (39.5±2.0) Î rad, or (1.65±0.08)Î c in terms of the critical angle for channeling. The process has a large probability with respect to channeling and takes place in the angular range equal to the bend angle of atomic planes. It could possibly open new fields of application of crystals in high-energy particle beam optics. © 2006 The American Physical Society.

Volume reflection of a proton beam in a bent crystal

Vomiero;
2006

Abstract

Volume reflection predicted in the mid-1980s by Taratin and Vorobiev has been observed for the first time in the interactions of a 70 GeV proton beam with a short bent crystal. Incident protons deviate from convex atomic planes in the bulk of the crystal as a result of coherent interaction with bent lattice around the tangency point of particle trajectory with a curved atomic plane. The deflection angle 2Î R was found to be (39.5±2.0) Î rad, or (1.65±0.08)Î c in terms of the critical angle for channeling. The process has a large probability with respect to channeling and takes place in the angular range equal to the bend angle of atomic planes. It could possibly open new fields of application of crystals in high-energy particle beam optics. © 2006 The American Physical Society.
2006
Inglese
97
14
http://www.scopus.com/inward/record.url?eid=2-s2.0-33749497035&partnerID=40&md5=4d25dd4a9ef4dd29319cc53bda2879fb
Coherent interaction
Particle beam optics
Volume reflection
Crystal lattices
Crystal structure
Optics
Probability
Reflection
Proton beams
cited By (since 1996)47
1
info:eu-repo/semantics/article
262
Ivanov; Yu.M.a;Petrunin; A.A.a;Skorobogatov; V.V.a;Gavrikov; Yu.A.a;Gelamkov; A.V.a;Lapina; L.P.a;Schetkovsky; A.I.a;Vavilov; S.A.a;Baranov; V.I.b;Che...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/20193
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