When approaching the design of a multipole magnet, such as a dipole, quadrupole, sextupole, and so on, it is highly advantageous to initiate the process by establishing the fundamental parameters. These parameters include conductor size, current density, inner and outer radius of the iron yoke, and more. This preliminary dimensioning enables the acquisition of the necessary specifications for the design. Within this report, analytical expressions for the magnetic field, Lorentz forces, and stored energy of multipole magnets with the cos(nθ) and sector coil configurations, both with and without the presence of an iron yoke, are derived. These derivations are based on the vector potential of a current line
International audienceCombined function magnets with dipole and quadrupole components were designed ...
This unit belongs to the fourth part of the course, which is focussed on magnet design. In this uni...
In this paper we discuss the main principles of magnetic design for superconducting magnets (dipoles...
When approaching the design of a multipole magnet, such as a dipole, quadrupole, sextupole, and so o...
In this paper, we propose analytical formulae to determine the magnetic energy stored in superconduc...
The mathematical calculations involved in the design of windings to produce symmetrical multipole fi...
Magnetic multipole elements play an important role in particle accelerators, and their potentials ar...
We wish to calculate the Lorentz body force associated with pure multipole helical magnetic fields (...
Recent advances in methods of computing magnetic fields have made it possible to study the field in ...
Linear accelerators based on superconducting magnet technology use a large number of relatively weak...
COSY-Jiilich [I] is a synchrotron and storage ring accelerating protons from 40 MeV injection energy...
Magnetostatic fields in accelerators are conventionally described in terms of multipoles. We show th...
Magnetostatic fields in accelerators are conventionally described in terms of multipoles. We show th...
This thesis presents some of the techniques used in designing the sector-focused magnet for the TRIU...
In this paper we discuss even multipolar components of the Large Hadron Collider dipole in relation ...
International audienceCombined function magnets with dipole and quadrupole components were designed ...
This unit belongs to the fourth part of the course, which is focussed on magnet design. In this uni...
In this paper we discuss the main principles of magnetic design for superconducting magnets (dipoles...
When approaching the design of a multipole magnet, such as a dipole, quadrupole, sextupole, and so o...
In this paper, we propose analytical formulae to determine the magnetic energy stored in superconduc...
The mathematical calculations involved in the design of windings to produce symmetrical multipole fi...
Magnetic multipole elements play an important role in particle accelerators, and their potentials ar...
We wish to calculate the Lorentz body force associated with pure multipole helical magnetic fields (...
Recent advances in methods of computing magnetic fields have made it possible to study the field in ...
Linear accelerators based on superconducting magnet technology use a large number of relatively weak...
COSY-Jiilich [I] is a synchrotron and storage ring accelerating protons from 40 MeV injection energy...
Magnetostatic fields in accelerators are conventionally described in terms of multipoles. We show th...
Magnetostatic fields in accelerators are conventionally described in terms of multipoles. We show th...
This thesis presents some of the techniques used in designing the sector-focused magnet for the TRIU...
In this paper we discuss even multipolar components of the Large Hadron Collider dipole in relation ...
International audienceCombined function magnets with dipole and quadrupole components were designed ...
This unit belongs to the fourth part of the course, which is focussed on magnet design. In this uni...
In this paper we discuss the main principles of magnetic design for superconducting magnets (dipoles...