Sciact
  • EN
  • RU

Conceptual Design of the "Fast Processes" Beamline at the SRF SKIF 4th Generation Synchrotron Тезисы доклада

Конференция International Conference "Synchrotron and Free electron laser Radiation: generation and application"
13-17 июл. 2020 , Novosibirsk
Сборник Synchrotron and Free electron laser Radiation: generation and application (SFR-2020), July 13 – 16, 2020 : Book of Abstracts
Сборник, ИЯФ СО РАН. Новосибирск.2020. 90 c. ISBN 9785904968076. РИНЦ
Вых. Данные Год: 2020, Номер статьи : 163, Страниц : 1
Авторы Rubtsov I.A. 1,2 , Ten K.A. 1 , Pruuel E.R. 1 , Kashkarov A.O. 1 , Arakcheev A.S. 3 , Tolochko B.P. 4 , Ancharov A.I. 4 , Zubavichus Ya.V. 2 , Rakshun Ya.V. 2,3 , Zolotarev K.V. 3 , Mezentsev N.A. 3 , Shkaruba V.A. 3 , Trebushinin A.E. 3 , Khomyakov Yu.V. 3 , Shekhtman L.I. 3 , Zhulanov V.V. 3 , Aulchenko V.M. 3
Организации
1 Lavrentyev Institute of Hydrodynamics SB RAS, Novosibirsk, Russia
2 Boreskov Institute of Catalysis SB RAS, Novosibirsk, Russia
3 Budker Institute of Nuclear Physics SB RAS, Novosibirsk, Russia
4 Institute of Solid State Chemistry and Mechanochemistry SB RAS, Novosibirsk, Russia

Реферат: “Fast Processes” is one out of six 1st priority beamlines that are planned for construction within the project SRF SKIF (Shared Research Facility “Siberian circular photon source") [1]. The beamline would include two independent instruments installed at a wiggler source, i.e., Dynamic processes and Plasma. The beamline is designed to meet a wide range of research and technological challenges related to processes occurring in nano- and microsecond timescales. The current conceptual design of the beamline aims at a complex approach to structural studies of various objects relying on high-brightness synchrotron radiation beams. The beamline would implement X-ray diffraction, small-angle scattering, and radiography techniques with a high temporal resolution, with a typical delay between frames down to 2.8 ns and exposures of about 50 ps. The assortment of scientific problems to be solved at the beamline includes studies of detonation processes; impact of explosion and shock waves on structural materials; dynamic endurance and fracture emergence; influence of laser irradiation and plasma on a variety of substances. The aforementioned synchrotron-based techniques will allow us to track structural changes along the detonation and shock-wave front, detect the formation of nanoparticles from explosion products (e.g., nanodiamonds), and elucidate the phase composition and local structure of substances subjected to extreme dynamic impacts. [1] http://srf-skif.ru
Библиографическая ссылка: Rubtsov I.A. , Ten K.A. , Pruuel E.R. , Kashkarov A.O. , Arakcheev A.S. , Tolochko B.P. , Ancharov A.I. , Zubavichus Y.V. , Rakshun Y.V. , Zolotarev K.V. , Mezentsev N.A. , Shkaruba V.A. , Trebushinin A.E. , Khomyakov Y.V. , Shekhtman L.I. , Zhulanov V.V. , Aulchenko V.M.
Conceptual Design of the "Fast Processes" Beamline at the SRF SKIF 4th Generation Synchrotron
В сборнике Synchrotron and Free electron laser Radiation: generation and application (SFR-2020), July 13 – 16, 2020 : Book of Abstracts. – ИЯФ СО РАН., 2020. – C.87-88. – ISBN 9785904968076. РИНЦ
Идентификаторы БД:
РИНЦ: 46197729
Цитирование в БД: Пока нет цитирований