Details

Merjenje magnetnega polja in histereze dipolnih ter kvadrupolnih magnetov
ID Ošlaj, Benjamin (Author), ID Pelicon, Primož (Mentor) More about this mentor... This link opens in a new window, ID Brenčič, Žiga (Comentor)

.pdfPDF - Presentation file, Download (3,86 MB)
MD5: C3DC93FD0F09CAAC3A1CDFE0AF958992

Abstract
Magneti imajo ključno vlogo v pospeševalniških sistemih. Natančno poznavanje lastnosti magnetov nam omogoča učinkovito kontrolo smeri žarkov nabitih delcev. V okviru zaključne naloge smo izbrali primeren magnetometer za nadzor preklopnega magneta na tandemskem pospeševalniku in ga ustrezno opremil, da smo ga lahko integrirali v obstoječi kontrolni sistem pospeševalnika. V nalogi smo izmerili in analizirali histerezo preklopnega dipolnega magneta na pospeševalniku Instituta Jožef Stefan. Raziskali smo, kako ta histereza vpliva na selekcijo ionov v žarkovno linijo. Za meritve smo izdelali namensko ohišje za Hallovo sondo, ki smo jo vstavili v preklopni magnet. Izmerili smo odvisnost gostote magnetnega polja v reži preklopnega magneta v odvisnosti od toka skozi navitje magneta. Iz izmerjenih podatkov smo določili remanentno gostoto magnetnega polja in koercitivni tok. Rezultati kažejo, da ima obravnavani magnet zelo ozko histerezo. Dodatno smo izmerili masni spekter protonskega žarka in molekularnega žarka pri naraščajočem in padajočem toku skozi preklopni magnet in s tem ocenili vpliv histereze na izbiro pravega nabojnega stanja ionskega žarka. Izdelali smo triosno pozicionirno mizico za kartiranje magnetnega polja magneta. Zaradi primanjkljaja magnetometrov smo naredili zgolj simulacijsko meritev za kvadrupolni magnet. Sistem bo ob dobavi novega magnetometra omogočil neposreden prehod na kartiranje magnetnih polj z minimalnimi spremembami.

Language:Slovenian
Keywords:histereza, dipolni magnet, kvadrupolni magnet, Hallov pojav, magnetometer, masni spekter, kartiranje magnetnega polja
Work type:Final paper
Typology:2.11 - Undergraduate Thesis
Organization:FMF - Faculty of Mathematics and Physics
Year:2026
PID:20.500.12556/RUL-188446 This link opens in a new window
COBISS.SI-ID:292303107 This link opens in a new window
Publication date in RUL:23.09.2026
Views:100
Downloads:10
Metadata:XML DC-XML DC-RDF
:
Copy citation
Share:Bookmark and Share

Secondary language

Language:English
Title:Measurement of magnetic field and hysteresis in dipole and quadrupole magnets
Abstract:
Magnets play a crucial role in accelerator systems. A good understanding of their properties enables precise control of particle trajectories in accelerators. The main goal of this thesis was to introduce a magnetometer into the accelerator system and to measure the hysteresis and magnetic fields of the accelerator magnets. In this work, we measured and analyzed the hysteresis of a switching dipole magnet on the accelerator at the Jožef Stefan Institute and investigated how this hysteresis affects ion selection in the beamlines. For the measurements, we fabricated a dedicated housing for the Hall probe, which was inserted into the magnet and its readout electronics integrated in to the control system of accelerator. We measured the dependence of the magnetic field density in the gap of the switching magnet and the current through the magnet coils. From the measured data, we determined the remanent magnetic flux density and the coercive current. The results indicate that the investigated magnet has exeptionally narrow hysteresis. Additionally, we measured the mass spectrum of a proton beam and a molecular beam during increasing and decreasing current through the switching magnet to examine the hysteresis influence on the coil beam selection. As part of this work, we also built a three-axis positioning stage for mapping the magnetic field of a real magnet. Due to a shortage of magnetometers, we only performed a simulation measurement for a quadrupole magnet. The simulation confirmed the status of the developed system. Upon delivery of additional magnetometer, it will allow mapping of magnetic fields with minimal changes.

Keywords:hysteresis, dipole magnet, quadrupole magnet, Hall effect, magnetometer, mass spectrum, 3D magnetic-field mapping

Similar documents

Similar works from RUL:
Similar works from other Slovenian collections:

Back