Multipoles Induced by Inter-Strand Coupling Currents in LARP Quadrupoles

Applied Superconductivity, IEEE Transactions  (2014)

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摘要
The U.S. LHC Accelerator Research Program has been developing Nb3Sn quadrupole magnets of progressively increasing performance and complexity for the High-Luminosity LHC project. The magnets are wound with Rutherford cables following the wind-and-react process. The resulting inter-strand coupling can generate strong field distortions during current ramp. The latest series of 120 mm aperture magnets (HQ) are designed and built for high field quality, offering an opportunity for detailed studies of these effects. Magnetic measurements of first-generation HQ magnets showed strong ramp-rate dependence. A stainless-steel core was introduced for the second generation of magnet coils to control the inter-strand coupling currents and the resulting dynamic multipoles. We report the observed dynamic effects and compare with calculations taking into account the coil geometry and cross-contact resistance in the Rutherford cable. In particular, the dependence of field quality on width and position of the stainless steel core is discussed.
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accelerator magnets,contact resistance,niobium compounds,stainless steel,superconducting coils,superconducting magnets,larp quadrupole magnet,nb3sn,rutherford cables,u.s. lhc accelerator research program,aperture magnets,coil geometry,cross-contact resistance,dynamic multipoles,field distortions,first-generation hq magnets,high field quality,high-luminosity lhc project,interstrand coupling current control,magnet coils,magnetic measurements,size 120 mm,stainless-steel core,strong field distortions,strong ramp-rate dependence,superconducting accelerator magnet,wind-and-react process,$hbox{nb}_{3}hbox{sn}$ accelerator magnets,field quality,rutherford cable,inter-strand coupling currents,harmonic analysis,large hadron collider,couplings,sensitivity
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