A. Sidorin
Joint Institute for Nuclear Research
32 Papers
95 Citations
A. Sidorin is an academic researcher from Joint Institute for Nuclear Research. The author has contributed to research in topics: Storage ring & Electron cooling. The author has an hindex of 7, co-authored 28 publications.
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Papers
Slow positron beam at the JINR, Dubna
TL;DR: The Low Energy Positron Toroidal Accumulator (LEPTA) at the Joint Institute for Nuclear Research (JINR) proposed for generation of positronium in flight has been adopted for positron annihilation spectroscopy (PAS).
Individual rare radioactive ion injection, cooling and storage in a ring
TL;DR: In this article, the authors proposed to use an individual trajectory correction in an appropriate transfer channel, and individual injection in a storage ring and a fast stacking procedure for the injected beam at small emittance and momentum spread.
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Electron Cooling of Intense Ion Beam
J. Dietrich,V. Kamerdjiev,Yu. V. Korotaev,R. Maier,Igor Meshkov,D. Prasuhn,A. Sidorin,Alexander Smirnov,J. Stein,H. Stockhorst +9 more
- 28 Mar 2006
TL;DR: In this paper, the results of experimental studies of the electron cooling of a proton beam at COSY (Juelich, Germany) are presented in comparison with previous results from HIMAC (Chiba, Japan) CELSIUS (Uppsala, Sweden) and LEAR (CERN).
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Instability phenomena of electron-cooled ion beams at COSY
V. Kamerdzhiev,J. Dietrich,R. Maier,Igor Meshkov,I. Mohos,D. Prasuhn,A. Sidorin,H. J. Stein,Hans Stockhorst +8 more
TL;DR: In this paper, a COSY electron cooling is used after stripping injection of H− or D− ions in order to prepare phase-space-dense ion beams before acceleration to a requested energy.
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Numerical simulation of crystalline ion beams in storage ring
Igor Meshkov,D. Möhl,Takeshi Katayama,A. Sidorin,Alexander Smirnov,E. M. Syresin,G. V. Trubnikov,H. Tsutsui +7 more
TL;DR: In this article, the authors used molecular dynamics technique to calculate the ordered state of the ion beams for the MUSES ion ring (IR) in collider mode and proposed a new strategy of the cooling process which permits to increase the linear density of the ordered ion beam and thereby the luminosity of electron-ion colliding experiments.
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