Zobrazeno 1 - 10
of 12
pro vyhledávání: '"V. M. Panasyuk"'
Autor:
M. I. Bryzgunov, A. P. Denisov, V. M. Panasyuk, V. V. Parkhomchuk, V. B. Reva, V. A. Chekavinskii
Publikováno v:
Technical Physics. 66:716-723
Autor:
V. B. Reva, A. D. Goncharov, V. V. Parkhomchuk, A. V. Bubley, V. M. Panasyuk, M. I. Bryzgunov
Publikováno v:
Physics of Particles and Nuclei Letters. 13:792-795
According to the agreement, the electron cooling system for the NICA booster should be commissioned in late 2015. The degree of completion of various units and components of the installation as of September 2015 is characterized in the present report
Autor:
V. B. Reva, D. N. Skorobogatov, V. V. Parkhomchuk, V. M. Panasyuk, A. D. Goncharov, M. I. Bryzgunov
Publikováno v:
Instruments and Experimental Techniques. 58:181-189
An electron cooler produced by the Budker Institute of Nuclear Physics was put into operation at the COSY synchrotron (Julich, Germany) in 2013. This electron cooler has been designed for suppressing the effect of beam scattering by an internal targe
Publikováno v:
Technical Physics. 58:911-918
An efficient collector for high-voltage systems of electron cooling is presented. Its efficiency (ratio of the reflected electron current to the current of the main beam) is greatly improved by suppressing the reflected particle flux in the Wien filt
Publikováno v:
Instruments and Experimental Techniques. 56:256-264
A high-perveance collector with a small secondary emission ratio has been designed for a high-voltage electron cooler. The distinctive feature of this collector is the fact that it consists of the cooled collector itself, which receives the electron
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 558:227-234
Electron cooling is now a standard tool for improvement of ion beam parameters in storage rings. In BINP, after successful development of several low-energy electron cooling devices, a project involving a high-energy electron cooler for GSI has been
Publikováno v:
Instruments and Experimental Techniques. 48:772-779
A device developed at the Budker Institute of Nuclear Physics (BINP) to measure with a high precision the direction of the magnetic field lines in the vicinity of the solenoid axis is described. The transverse field components are automatically measu
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 532:413-417
Electron guns installed in electron-cooling devices produce beams whose 2D profiles are variable. The profiles were measured at the test bench by passing a wire across the beam, while the electric current from the wire and the light radiation along t
Autor:
V.S Tupikov, P.V Logatchov, V. V. Parkhomchuk, A. M. Kudryavtsev, G.S Krainov, B. Smirnov, M.E. Veis, Boris Skarbo, B.I. Grishanov, Vladimir Reva, Anatoly Goncharov, S. Konstantinov, R.A. Salimov, P.I. Nemytov, E.I. Antokhin, A. V. Bubley, B. Sukhina, E. S. Konstantinov, V. M. Panasyuk, V. Bocharov, G.M Kuznetcov, D.G Myakishev, N.K. Kuksanov
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 441:87-91
Several projects for ion colliders are currently under consideration in China and Japan. A draft project for an electron cooling system at an energy of electrons of 350 keV is presented. There is an easy opportunity to develop it up to 1.5 MeV. Based
Autor:
Yu. M. Shatunov, Boris Breizman, Ivan Koop, P. Z. Chebotaev, V. M. Panasyuk, A. A. Bechtenev, A.N. Skrinsky, B. L. Militsyn, A. M. Kudryavtsev
Publikováno v:
Physics of Fluids B: Plasma Physics. 5:2714-2718
A new experiment on plasma wake‐field acceleration has been designed at the Budker Institute of Nuclear Physics in Novosibirsk. An intense modulated driving beam from the electron–positron booster (BEP), a storage ring, will be used to excite a n