2021JACOWOpen access

First Experiments with Accelerated Ion Beams in the Booster of NICA Accelerator Complex

Andrey V. Butenko, Nicolai Agapov, Alexander Alfeev, V. Andreev, A.M. Baldin, Alexander Vladimirovich Bazanov, Oleg I. Brovko, Denis Donets, Alexey V. Eliseev, A.A. Fateev, George Fatkin, Artem R. Galimov, Boris V. Golovenskiy, Evgeny V. Gorbachev, Ivan Gorelyshev, Alexander Govorov, Evgeniy V. Ivanov, Viktor N. Karpinsky, Vladimir D. Kekelidze, Hamlet G. Khodzhibagiyan, Alexander Viktorovich Kirichenko, А.P. Коbets, Andrey Konstantinov, Sergey Korovkin, V. V. Kosachev, Sergey A. Kostromin, Alexander Kovalenko, Oleg Kozlov, G. Kunchenko, Konstantin A. Levterov, Igor Nikolaevich Meshkov, Vladimir V. Mikhailov, Valery Monchinsky, Alexander V Nesterov, Dmitry N. Nikiforov, Aleksandr V. Philippov, R. V. Pivin, Dmitry O. Ponkin, Sergey Vladimirovich Romanov, G. S. Sedykh, Ilia Shirikov, Alexandr Shurygin, A. A. Sidorin, Alexey Sidorov, Alexei Svidetelev, Evgeny M. Syresin, Grigoriy Trubnikov, Alexey Tuzikov, B.V. Vasilishin, Valery Fedorovich Volkov

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Abstract

The NICA accelerator complex in JINR consist of two linear injector chains, a 578 MeV/u superconducting (SC) Booster synchrotron, the existing SC synchrotron Nuclotron, and a new SC collider that has two storage rings. The construction of the facility is based on the Nuclotron technology of SC magnets with an iron yoke and hollow SC cable. Assembly of the Booster synchrotron was finished in autumn of 2020 and first machine Run and experiments with ion beams were successfully done in December 2020. The results of this Run are discussed in this paper.

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What this paper is about

The NICA accelerator complex in JINR consist of two linear injector chains, a 578 MeV/u superconducting (SC) Booster synchrotron, the existing SC synchrotron Nuclotron, and a new SC collider that has two storage rings. The construction of the facility is based on the Nuclotron technology of SC magnets with an iron yoke and hollow SC cable. Assembly of the Booster synchrotron was finished in autumn of 2020 and first machine Run and experiments with ion beams were successfully done in December 2020. The results of this Run are discussed in this paper.

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Available abstract

The NICA accelerator complex in JINR consist of two linear injector chains, a 578 MeV/u superconducting (SC) Booster synchrotron, the existing SC synchrotron Nuclotron, and a new SC collider that has two storage rings. The construction of the facility is based on the Nuclotron technology of SC magnets with an iron yoke and hollow SC cable. Assembly of the Booster synchrotron was finished in autumn of 2020 and first machine Run and experiments with ion beams were successfully done in December 2020. The results of this Run are discussed in this paper.

Key concepts: Booster (rocketry), Ion, Physics, Nuclear physics, Quantum mechanics, Astronomy

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