A. A. Durum
Kurchatov Institute
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Featured researches published by A. A. Durum.
Jetp Letters | 2012
A. G. Afonin; V.I. Baranov; V. T. Baranov; G. I. Britvich; A. P. Bugorskii; M. K. Bulgakov; A. A. Durum; I. S. Lobanov; A. N. Lun’kov; A. V. Lutchev; V. A. Maisheev; Yu. E. Sandomirskii; A. V. Skleznev; Yu.A. Chesnokov; P. N. Chirkov; I. A. Yazynin; A. A. Yanovich
Bent crystals are used at large accelerators to deflect particle beams for extraction and collimation. Not only the deflection but also the focusing of beams by bent crystals can be required for recently formulated proposals for investigations at the Large Hadron Collider (LHC) with a fixed target. The experimental results on the focusing of a 50-GeV proton beam with a new crystal device, which can be used in a circulating beam of a large accelerator such as the LHC, have been reported.
Jetp Letters | 2016
A. G. Afonin; G. I. Britvich; A. P. Bugorskii; M. K. Bulgakov; A. A. Durum; M. Yu. Kostin; A. V. Lutchev; V. A. Maisheev; Yu. E. Sandomirskii; V. I. Pitalev; I. V. Poluektov; Yu. A. Chesnokov; P. N. Chirkov; A. A. Yanovich
At large accelerators, bent crystals are employed to deflect weakly divergent proton beams at the stages of extraction and collimation. We demonstrate that a divergent particle beam may be efficiently deflected using a crystal with a focusing edge. A proton beam with divergence near 1 mrad, which exceeds the Lindhard angle by a factor of 30, has been experimentally deflected by 1.8 mrad with efficiency near 15%. The proposed focusing crystal may serve as an element of a novel optical system for secondary-particle beams in the TeV energy region.
Instruments and Experimental Techniques | 2016
A. G. Afonin; E. V. Barnov; G. I. Britvich; A. A. Durum; M. Yu. Kostina; V. A. Maisheev; V. I. Pitalev; S. F. Reshetnikov; Yu. A. Chesnokov; P. N. Chirkov; A. A. Yanovich; R. M. Nazhmudinov; A. S. Kubankin; A.V. Shchagin
A beam of six-charged carbon ions with an energy of 24.8 GeV/nucleon is extracted from the U-70 synchrotron by means of a silicon crystal bent through 85 mrad. A total of 200000 particles are observed in beamline 4a upon forcing 109 circulating ions to the crystal. The geometrical parameters, timing structure, and composition of the beam have been measured. It has been shown for the first time that, using a bent single crystal, an ion beam with required parameters can be extracted from the accelerator ring and formed for regular use in physics experiments.
Jetp Letters | 2017
A. G. Afonin; E. V. Barnov; G. I. Britvich; M. K. Bulgakov; A. A. Durum; M. Yu. Kostin; A. V. Lutchev; V. A. Maisheev; Yu. E. Sandomirskii; V. I. Pitalev; I. V. Poluektov; S. F. Reshetnikov; Yu. A. Chesnokov; P. N. Chirkov; A. A. Yanovich
It has recently been realized that the focusing of high-energy particle beams at a distance of about 1 cm is promising. A new idea is proposed in this work to focus the beam at a short distance by using a bent plane–parallel silicon plate whose side edges are rotated at a small angle with respect to crystallographic planes. At the U-70 accelerator (IHEP, Protvino), a 50-GeV proton beam has been focused to a narrow line with a width of no more than 30 μm at a distance of 17 cm.
Jetp Letters | 2015
W. Scandale; Gianluigi Arduini; Mark Butcher; F. Cerutti; M. Garattini; S. Gilardoni; Anton Lechner; R. Losito; A. Masi; A. Mereghetti; E. Metral; Daniele Mirarchi; S. Montesano; Stefano Redaelli; Roberto Rossi; P. Schoofs; G. Smirnov; E. Bagli; L. Bandiera; S. Baricordi; P. Dalpiaz; G. Germogli; V. Guidi; A. Mazzolari; D. Vincenzi; G. Claps; S. Dabagov; D. Hampai; F. Murtas; G. Cavoto
Bent silicon crystals in channeling mode are already used for beam extraction and collimation in particle accelerators. Volume reflection of beam particles is more efficient than beam channeling; however, the mean deflection angle is rather small. An experiment on the deflection of a 400 GeV/c proton beam and a 150 GeV/c π− beam at CERN using a multi-strip silicon deflector in reflection mode is described. The mean deflection angle of beam particles has been considerably increased due to sequential volume reflections realized in the deflector. This gives possibility for a successful usage of the multi-strip deflectors for beam collimation in high-energy accelerators.
European Physical Journal C | 2018
W. Scandale; F. Andrisani; Gianluigi Arduini; F. Cerutti; M. Garattini; S. Gilardoni; A. Masi; Daniele Mirarchi; S. Montesano; S. Petrucci; Stefano Redaelli; P. Schoofs; Roberto Rossi; D. Breton; D. Chaumat; S. Dubos; J. Maalmi; A. Natochii; V. Puill; A. Stocchi; E. Bagli; L. Bandiera; G. Germogli; V. Guidi; A. Mazzolari; F. Murtas; F. Addesa; G. Cavoto; F. Iacoangeli; F. Galluccio
Inelastic nuclear interaction probability of 400 GeV/c protons interacting with bent silicon crystals was investigated, in particular for both types of crystals installed at the CERN Large Hadron Collider for beam collimation purposes. In comparison to amorphous scattering interaction, in planar channeling this probability is
Proceedings of 38th International Conference on High Energy Physics — PoS(ICHEP2016) | 2017
Roberto Rossi; F. Galluccio; Yury Chesnokov; G. Smirnov; Daniele Mirarchi; A.M. Taratin; F. Murtas; Roberto Losito; Gianluigi Arduini; Yury E Sandomirskiy; M. Raymond; Roberta Santacesaria; Alessandro Masi; Francesca Addesa; S.B. Dabagov; Iouri M Ivanov; Germogli Germogli; Stefano Redaelli; E. Bagli; Yury A Gavrikov; L. Bandiera; Gianluca Valentino; A. Stocchi; Mark Butcher; Leonid Burmistrov; Marco Garattini; Paolo Valente; A. D. Kovalenko; W. Scandale; A A Yanovic
Journal of Physics: Conference Series | 2016
A. G. Afonin; E. V. Barnov; G. I. Britvich; Yu. A. Chesnokov; P. N. Chirkov; A. A. Durum; M. Yu. Kostin; V. A. Maisheev; V. I. Pitalev; S. F. Reshetnikov; A. A. Yanovich; R. M. Nazhmudinov; A. S. Kubankin; A. V. Shchagin
sim 36%
Physics Letters B | 2016
W. Scandale; Gianluigi Arduini; Mark Butcher; F. Cerutti; M. Garattini; S. Gilardoni; Anton Lechner; R. Losito; Alessandro Masi; Daniele Mirarchi; S. Montesano; Stefano Redaelli; Roberto Rossi; P. Schoofs; G. Smirnov; Gianluca Valentino; D. Breton; L. Burmistrov; V. Chaumat; S. Dubos; J. Maalmi; V. Puill; A. Stocchi; E. Bagli; L. Bandiera; G. Germogli; V. Guidi; A. Mazzolari; S.B. Dabagov; F. Murtas
Physics Letters B | 2016
W. Scandale; Gianluigi Arduini; Mark Butcher; F. Cerutti; M. Garattini; S. Gilardoni; Anton Lechner; A. Masi; Daniele Mirarchi; S. Montesano; Stefano Redaelli; Roberto Rossi; G. Smirnov; D. Breton; L. Burmistrov; V. Chaumat; S. Dubos; J. Maalmi; V. Puill; A. Stocchi; E. Bagli; L. Bandiera; G. Germogli; V. Guidi; A. Mazzolari; S. Dabagov; F. Murtas; F. Addesa; G. Cavoto; F. Iacoangeli
∼36% for the quasi-mosaic type (planes (111)), and