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Полная запись метаданных
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dc.contributor.authorAmoskov, Victor M.-
dc.contributor.authorVasiliev, Vyacheslav N.-
dc.contributor.authorGapionok, Elena I.-
dc.contributor.authorGulbekian, Georgy G.-
dc.contributor.authorEdamenko, Nikolai S.-
dc.contributor.authorIvanenko, Ivan A.-
dc.contributor.authorKazarinov, Nikolay Y.-
dc.contributor.authorKalagin, Igor V.-
dc.contributor.authorKaparkova, Marina V.-
dc.contributor.authorKukhtin, Vladimir P.-
dc.contributor.authorLamzin, Evgeny A.-
dc.contributor.authorMakarov, Anatoly A.-
dc.contributor.authorNezhentzev, Andrey N.-
dc.contributor.authorOvsyannikov, Dmitrij A.-
dc.contributor.authorOvsyannikov, Dmitry A. (jr)-
dc.contributor.authorOsipov, Nikolai F.-
dc.contributor.authorRodin, Igor Y.-
dc.contributor.authorSytchevsky, Sergey E.-
dc.contributor.authorFirsov, Alexey A.-
dc.contributor.authorShatil, Nikolay A.-
dc.date.accessioned2023-03-14T13:13:58Z-
dc.date.available2023-03-14T13:13:58Z-
dc.date.issued2022-12-
dc.identifier.citationAmoskov, V. M., Vasiliev, V. N., Gapionok, E. I., Gulbekian, G. G., Edamenko, N. S., Ivanenko, I. A., Kazarinov, N. Y., Kalagin, I. V., Kaparkova, M. V., Kukhtin, V. P., Lamzin, E. A., Makarov, A. A., Nezhentzev, A. N., Ovsyannikov, D. A., Ovsyannikov (jr), D. A., Osipov, N. F., Rodin, I. Y., Sytchevsky, S. E., Firsov, A. A., & Shatil, N. A. (2023). Modelling and design of permanent magnet multipoles for beam transport and focusing. II. Configuring the quad. Vestnik of Saint Petersburg University. Applied Mathematics. Computer Science. Control Processes, 18(4), 454-472.en_GB
dc.identifier.otherhttps://doi.org/10.21638/11701/spbu10.2022.402-
dc.identifier.urihttp://hdl.handle.net/11701/39305-
dc.description.abstractAn optimized magnetic specification has been searched for a PM quadrupole constructed for the DC-140 cyclotron in JINR, Dubna. The field inhomogeneity should be reduced to come closer to an ideal distribution. The quad parameters should be determined with very high mechanical and magnetic precision in order to reach the specified gradient. Results of the analytic study based on a 2D model gave initial values for the PM blocks dimensions and orientations. To ensure stringent performance criteria, parametrized 2D and 3D models of the quad were built. These models were used to optimize the magnet configuration, analyze its sensitivity to various errors and derive parameter tolerances. Additional adjustment to suitable field quality is foreseen using results of a trajectory analysis and acceptance inspection. The design parameters for the best suited magnet configuration are presented and the performance criteria are defined. However, an electromagnetic analysis of the selected configuration has revealed that the relative field error adopted previously as the optimization criterion gives low accuracy estimate. Alternative estimations are proposed utilizing the field gradient error as the basic criterion to satisfy the constraint on the field inhomogeneity.en_GB
dc.language.isoruen_GB
dc.publisherSt Petersburg State Universityen_GB
dc.relation.ispartofseriesVestnik of St Petersburg University. Applied Mathematics. Computer Science. Control Processes;Volume 18; Issue 4-
dc.subjectpermanent magneten_GB
dc.subjectquadrupoleen_GB
dc.subjectbeam transporten_GB
dc.subjectdirect and inverse problemsen_GB
dc.subjectsimulationen_GB
dc.titleModelling and design of permanent magnet multipoles for beam transport and focusing. II. Configuring the quaden_GB
dc.typeArticleen_GB
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