DocumentCode :
1068121
Title :
Sextupole winding in a dipole magnet gap for a storage ring
Author :
Shoji, Yoshihiko ; Hashimoto, Satoshi ; Ando, Ainosuke ; Fukumoto, Shintaro
Author_Institution :
Lab. of Adv. Sci. & Technol. for Ind., Himeji Inst. of Technol., Ako, Japan
Volume :
14
Issue :
2
fYear :
2004
fDate :
6/1/2004 12:00:00 AM
Firstpage :
453
Lastpage :
456
Abstract :
In special synchrotrons a controllable sextupole field is required in the bending dipole magnets. One of them is NewSUBARU, a 1.5 GeV synchrotron light source. It has inverse dipole (bending) magnets to control the linear momentum compaction factor. It has to have a controllable sextupole at the position of the inverse bend for an independent control of its horizontal chromaticity and its higher order momentum compaction factor while keeping enough dynamic aperture. The inverse bend is a normal conducting C-type magnet whose bending angle, maximum field strength, yoke length and magnet gap are - 8 degrees, 1.554 T, 444 mm and 40 mm, respectively. The height of vacuum chamber in it is 28 mm, smaller than that in a normal bending magnet, while the magnet gaps are the same. This is because the vertical beta function at the inverse dipole is smaller. A pair of water-cooled coil sheets, which produce a sextupole field, are set at the space between the chamber and the pole face. Its thickness, the maximum current and the maximum sextupole field are 4.4 mm, 154 A and 70 T/m2, respectively.
Keywords :
accelerator magnets; electron accelerators; electron beam focusing; storage rings; synchrotron radiation; windings; 1.5 GeV; 1.554 T; 154 mA; 28 mm; 4.4 mm; 444 mm; NewSUBARU; accelerator magnets; bending angle; bending dipole magnets; controllable sextupole field; dipole magnet gap; dynamic aperture; electron beam focusing; electron storage ring; higher order momentum compaction factor; horizontal chromaticity; independent control; inverse bend; inverse dipole magnets; linear momentum compaction factor; maximum field strength; normal bending magnet; normal conducting C-type magnet; sextupole winding; synchrotron light source; synchrotrons; vacuum chamber; vertical beta function; water-cooled coil sheets; yoke length; Apertures; Coils; Compaction; Dispersion; Electron beams; Laboratories; Light sources; Storage rings; Superconducting magnets; Synchrotrons; Accelerator magnets; coils; electron beam focusing; electron storage rings;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2004.829694
Filename :
1324831
Link To Document :
بازگشت