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The Dipole Magnets Arrangement in the Collider of NICA Complex

  • PHYSICS AND TECHNIQUE OF ACCELERATORS
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Physics of Particles and Nuclei Letters Aims and scope Submit manuscript

Abstract

The beam phase volume blowup effect during the beam circulation in cyclic accelerator vacuum chamber, caused by the closed orbit distortion, is one of the limiting factors of the accelerator acceptance. In order to reduce the closed orbit distortions due to the effective lengths spread (magnetic field integrals) of the dipole magnets, it is proposed to arrange the dipole magnets around the ring in a special procedure. The procedures for such special dipole magnets arrangement, which allow to optimize the beam dynamic characteristics in two rings of the Collider of the NICA complex are discussed in this paper. Based on one of the proposed procedures, the arrangement of dipole magnets was chosen.

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REFERENCES

  1. Technical Design of the NICA Complex (JINR, Dubna, 2015) [in Russian].

  2. S. A. Kostromin, O. S. Kozlov, A. V. Tuzikov, and A. V. Philippov, Pis’ma v EChAYa 17, 422–428 (2020).

  3. V. N. Emel’yanenko, O. Kazinova, V. A. Mikhailov, and A. V. Philippov, Pis’ma v EChAYa 17, 429–434 (2020).

  4. “Methodical accelerator design,” http://madx.web. cern.ch/madx/.

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ACKNOWLEDGMENTS

The author expresses his gratiful to V. V. Borisov, Head of Sector No. 4, and D. N. Nikiforov, Head of the Scientific and Experimental Division Supercondacting Magnets and Technologies of the VBLHEP, for preparing and providing magnetic measurement data. In addition, the author is grateful to I.N. Meshkov, H.G. Khodzhibagiyan, and V.A. Lebedev for their interest for the work and useful remarks, as well as to A.O. Sidorin, S.A. Kostromin, M.M. Shandov and A.V. Tuzikov for different fruitful discussions.

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Correspondence to A. V. Philippov.

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The author declares that he has no conflicts of interest.

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Translated by M. Samokhina

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Philippov, A. The Dipole Magnets Arrangement in the Collider of NICA Complex. Phys. Part. Nuclei Lett. 20, 854–859 (2023). https://doi.org/10.1134/S1547477123040283

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  • DOI: https://doi.org/10.1134/S1547477123040283

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