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Titlebook: Crystal Channeling and Its Application at High-Energy Accelerators; Valery M. Biryukov,Yuri A. Chesnokov,Vladilen I. K Book 1997 Springer-

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发表于 2025-3-21 16:14:45 | 显示全部楼层 |阅读模式
书目名称Crystal Channeling and Its Application at High-Energy Accelerators
编辑Valery M. Biryukov,Yuri A. Chesnokov,Vladilen I. K
视频video
丛书名称Accelerator Physics
图书封面Titlebook: Crystal Channeling and Its Application at High-Energy Accelerators;  Valery M. Biryukov,Yuri A. Chesnokov,Vladilen I. K Book 1997 Springer-
描述"Nature performs not hing vainly, and makes nothing unnecessary" Aristotle Interest in the passage of charged particles through crystals first appeared at the beginning of this century following experiments on x-ray diffraction in crystallattices, which provided the proof of an ordered distribution of atoms in a crystal. Stark [1] put forward the hypothesis that certain directions in a crystal should be relatively transparent to charged particles. These first ideas on the channeling of charged particles in crystals were forgotten but became topical again in the early 1960s when the channeling effect was rediscovered by computer simulation [2] and in experiments [3] that revealed anomalously long ion ranges in crystals. The orientational ef­ fects during the passage of charged particles through crystals have been found for a whole range of processes characterized by small impact parameters for collisions between particles and atoms: nuclear reactions, large-angle scatter­ ing, energy losses. Lindhard explained the channeling of charged particles in crystals [4]. The results of the numerous investigations into the channeling of low-energy (amounting to several MeV) charged particles
出版日期Book 1997
关键词Beam Deflection; Crystal Channeling; Crystal Extraction; Experiment; High-Energy Physics; Particle Physic
版次1
doihttps://doi.org/10.1007/978-3-662-03407-1
isbn_softcover978-3-642-08238-2
isbn_ebook978-3-662-03407-1Series ISSN 1430-9246
issn_series 1430-9246
copyrightSpringer-Verlag Berlin Heidelberg 1997
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Crystal Channeling and Its Application at High-Energy Accelerators
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,Weyl Transforms with Symbols in ,(ℝ,),re called the crystal lattice. The crystal lattice is usually represented by a spatial grid of the straight lines (Fig. 1.1). The intersection points are called the lattice nodes. Only in the simplest case does a single node correspond to a single atom. If there are several kinds of atoms in the cry
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Compact Localization Operators,g from the initial direction by the angle of the crystal bend. The possibility of such an effect and the proposal to use it for steering high-energy particle beams were suggested by Tsyganov in 1976 [56], and then realized in a pioneering experiment [57] in Dubna in 1979 by a joint Soviet-American t
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,Hilbert-Schmidt Operators on ,(ℝ,),anishing outside at already ~ 1 Å from the crystal surface. This suggests that a bent crystal can be used for extracting the circulating particles from an accelerator ring [134]. The crystal should intercept a fraction of the circulating beam and provide the trapped particles with a small deflection
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,Weyl Transforms with Symbols in ,(ℝ,),tions of high-energy particles with aligned crystals. Many ideas proposed in this direction are reviewed by Sun [159]. Here we touch, without details, on some of these ideas, which open new possibilities for the investigation of the characteristics of short-lived particles.
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