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@inproceedings{shandov:rupac2021-tub02, author = {M.M. Shandov and H.G. Khodzhibagiyan and S.A. Kostromin and O.S. Kozlov and I. Nikolaichuk and T. Parfylo and A.V. Philippov and A. Tuzikov}, % author = {M.M. Shandov and H.G. Khodzhibagiyan and S.A. Kostromin and O.S. Kozlov and I. Nikolaichuk and T. Parfylo and others}, % author = {M.M. Shandov and others}, title = {{NICA Collider Magnetic Field Correction System}}, % booktitle = {Proc. RuPAC'21}, booktitle = {Proc. 27th Russ. Part. Accel. Conf. (RuPAC'21)}, eventdate = {2021-09-27/2021-10-01}, pages = {41--43}, eid = {TUB02}, language = {english}, keywords = {collider, quadrupole, FEM, dipole, lattice}, venue = {Alushta, Crimea}, series = {Russian Particle Accelerator Conference}, number = {27}, publisher = {JACoW Publishing}, location = {Geneva, Switzerland}, date = {2021-10}, month = {10}, year = {2021}, issn = {2673-5539}, isbn = {978-3-95450-240-0}, doi = {10.18429/JACoW-RuPAC2021-TUB02}, url = {https://jacow.org/rupac2021/papers/tub02.pdf}, abstract = {{The NICA Collider is a new superconducting facility that has two storage rings, each of about 503 m in circumference, which is under construction at the Joint Institute for Nuclear Research, Dubna, Russia. The influence of the fringe fields and misalignments of the lattice magnets, the field imperfections and natural chromaticity should be corrected by the magnetic field correction system. The layout and technical specification of the magnetic field correction system, the main parameters, arrangements and the field calculations and measurement results of the corrector magnets are presented. The results of dynamic aperture calculation at working energies are shown.}}, }