Zobrazeno 1 - 10
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pro vyhledávání: '"N.A. Podgornov"'
Akademický článek
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Autor:
A. Yu. Barnyakov, M. Yu. Barnyakov, V.S. Bobrovnikov, A.R. Buzykaev, A.F. Daniluyk, M. Düren, A. Hayrapetyan, A.A. Katcin, H. Kayan, S.A. Kononov, E.A. Kravchenko, I.A. Kuyanov, I.O. Ovtin, N.A. Podgornov, S.I. Pomuleva, M.A. Schmidt, A.S. Shalygin, M. Traxler
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 1039:167044
Autor:
A.F. Danilyuk, S.A. Kononov, M.Yu. Barnyakov, V. S. Bobrovnikov, Alexey Talyshev, N.A. Podgornov, P.V. Kasyanenko, A. B. Kurepin, A. I. Reshetin, I.V. Ovtin, A.Yu. Barnyakov, D.A. Finogeev, I.A. Kuyanov, E. A. Usenko, V.I. Razin, A. P. Onuchin, Alexey Buzykaev, E. A. Kravchenko
Publikováno v:
Physics of Particles and Nuclei. 49:30-32
Aerogel has been successfully used as a radiator in Cherenkov detectors. In 2004, a multilayer aerogel providing Cherenkov ring focusing was proposed and produced. FARICH (Focusing Aerogel Rich Imaging CHerenkov) detectors such as ARICH for Belle-II
Autor:
I.V. Ovtin, A.Yu. Predein, M.Yu. Barnyakov, A. P. Onuchin, A.F. Danilyuk, P. Kirilenko, V.G. Prisekin, R.S. Protsenko, L. Shekhtman, I.A. Kuyanov, E. A. Kravchenko, A.Yu. Barnyakov, S.A. Kononov, D.V. Korda, A.A. Katcin, N.A. Podgornov, Alexey Buzykaev, V. Kudryavtsev, V. S. Bobrovnikov
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 876:249-251
The work concerns the development of aerogel radiators for RICH detectors. Aerogel tiles with a refractive index of 1.05 were tested with a RICH prototype on the electron beam on the VEPP-4M collider. It has been shown that polishing with silk tissue
Autor:
Alexey Talyshev, Alexey Buzykaev, A.A. Katcin, A.Yu. Barnyakov, Anton S. Shalygin, L. Shekhtman, N.A. Podgornov, Ivan Ovtin, E. A. Kravchenko, I.A. Kuyanov, A. P. Onuchin, M.Yu. Barnyakov, S.A. Kononov, V.S. Boborovnikov, V.V. Porosev, P.V. Kasyanenko, A.F. Danilyuk, A.V. Bykov
Publikováno v:
Journal of Instrumentation. 15:C10014-C10014
The excellent particle identification (PID) system is needed for the successful execution of the broad experimental program at future Super C-τ Factory (SCTF) in Novosibirsk. The main requirements for the PID system are the following: good π/K-sepa
Autor:
I. A. Kuyanov, S.A. Kononov, I.M. Plekhov, V.S. Boborovnikov, M.Yu. Barnyakov, N.A. Podgornov, A.F. Danilyuk, Ivan Ovtin, G.P. Razuvaev, K. Yu Todyshev, A.A. Katcin, A. R. Buzykaev, A. Yu. Barnyakov, V.S. Vorobyev, A. P. Onuchin, E. A. Kravchenko, M.S. Belozyorova
Publikováno v:
Journal of Instrumentation. 15:C04032-C04032
The Super Charm-Tau Factory is an electron-positron collider project in Novosibirsk with a peak luminosity of 1035 cm−1s−1 operating in the center of mass energy range between 2 and 6 GeV. The physics program of the experiment in general is devot
Autor:
Alexey Buzykaev, E. A. Kravchenko, A. P. Onuchin, A.A. Katcin, A.Yu. Barnyakov, M.Yu. Barnyakov, D.V. Korda, N.A. Podgornov, A.F. Danilyuk, K. Yu. Todyshev, V.S. Vorobyev, V.S. Boborovnikov, G.P. Razuvaev, A.V. Bykov, V.A. Rodiakin, I.A. Kuyanov, V.V. Porosev, I.V. Ovtin, S.A. Kononov
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 958:162352
The Super Charm–Tau (SCT) Factory is a proposed electron–positron collider in Novosibirsk with a peak luminosity of 1 0 35 cm − 1 s − 1 operating in the energy range between 2and 6 GeV. The interaction region should be equipped by an excellen
Autor:
I.A. Kuyanov, V.V. Porosev, M.Yu. Barnyakov, V.A. Tayursky, E. A. Kravchenko, A.Yu. Barnyakov, I.V. Ovtin, Alexey Talyshev, L. Shekhtman, A.F. Danilyuk, A.A. Katcin, P.V. Kasyanenko, A. P. Onuchin, V.A. Rodiakin, N.A. Podgornov, A.V. Bykov, F.V. Ignatov, S.A. Kononov, V.S. Boborovnikov, Alexey Buzykaev, D.V. Korda
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 952:162247
A high performance particle identification (PID) system is essential for the successful realization of the broad physics program at the future Super C- τ Factory in Novosibirsk. The main requirements for the PID system are as follows: good π / K -s
Autor:
A.Yu. Predein, L. Shekhtman, I. A. Kuyanov, A.A. Borodenko, M.Yu. Barnyakov, V. Kudryavtsev, N.A. Podgornov, E. A. Kravchenko, D.A. Finogeev, Andrey Reshetin, R.S. Protsenko, E. A. Usenko, A.F. Danilyuk, R. Schulze, Tatiana Karavicheva, V. E. Blinov, I.Yu. Basok, A. R. Buzykaev, D.V. Korda, O. Muelhens, Alexey Talyshev, P.V. Kasyanenko, Victor Bobrovnikov, S.A. Kononov, A. Yu. Barnyakov, A. P. Onuchin, V.V. Gulevich, Thomas Frach, Alexey Kurepin, V.G. Prisekin, V.I. Razin, Ralf Dorscheid, Carsten Degenhardt, Bernardus Antonius Maria Zwaans, I.V. Ovtin
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 766:88-91
In June 2012 a FARICH prototype from Philips Digital Photon Counting (PDPC) based on a photon camera with dimensions of 200×200 mm has been tested at CERN. Remarkable particle separation has been achieved with a 4-layer aerogel sample: the π/K sepa
Akademický článek
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