This paper presents the results of initial field quality optimization of body and end harmonics in a 'common coil magnet design'. It is shown that a good field quality, as required in accelerator magnets, can be obtained by distributing conductor blocks in such a way that they simulate an elliptical coil geometry. This strategy assures that the amount of conductor used in this block design is similar to that is used in a conventional cosine theta design. An optimized yoke that keeps all harmonics small over the entire range of operation using a single power supply is also presented. The field harmonics are primarily optimized with the computer program ROXIE
In this paper we discuss the main principles of magnetic design for superconducting magnets (dipoles...
High critical current densities, high critical magnetic fields, improved mechanical properties, and ...
An integrated design approach is used at CERN for the design and optimization of superconducting acc...
This paper presents the results of initial field quality optimization of body and end harmonics in a...
Abstract — This paper presents the results of initial field quality optimization of body and end har...
This paper presents a new approach to accelerator magnet design, based on simple and robust single-l...
International audienceWe propose an optimization method to design an elongated three-axes magnetic f...
The field quality in superconducting magnets has been improved to a level that it does not appear to...
In the design of superconducting accelerator magnets, the shape of the coil cross section is mainly ...
International audienceA new magnetic design method, which optimizes the position of the conductors i...
The expected field quality in superconducting mag-nets for large particle accelerators has improved ...
The field in coil-dominated superconducting magnets can be maximized by optimizing the coil shape. I...
International audienceIn the frame of the RACCAM project, the coil shaping magnet design is studied....
This paper reports a study on the optimal magnetic design of a compact quadrupole electromagnet for ...
For some cases of lattice layout in particle accelerators, the major part of the energy deposition c...
In this paper we discuss the main principles of magnetic design for superconducting magnets (dipoles...
High critical current densities, high critical magnetic fields, improved mechanical properties, and ...
An integrated design approach is used at CERN for the design and optimization of superconducting acc...
This paper presents the results of initial field quality optimization of body and end harmonics in a...
Abstract — This paper presents the results of initial field quality optimization of body and end har...
This paper presents a new approach to accelerator magnet design, based on simple and robust single-l...
International audienceWe propose an optimization method to design an elongated three-axes magnetic f...
The field quality in superconducting magnets has been improved to a level that it does not appear to...
In the design of superconducting accelerator magnets, the shape of the coil cross section is mainly ...
International audienceA new magnetic design method, which optimizes the position of the conductors i...
The expected field quality in superconducting mag-nets for large particle accelerators has improved ...
The field in coil-dominated superconducting magnets can be maximized by optimizing the coil shape. I...
International audienceIn the frame of the RACCAM project, the coil shaping magnet design is studied....
This paper reports a study on the optimal magnetic design of a compact quadrupole electromagnet for ...
For some cases of lattice layout in particle accelerators, the major part of the energy deposition c...
In this paper we discuss the main principles of magnetic design for superconducting magnets (dipoles...
High critical current densities, high critical magnetic fields, improved mechanical properties, and ...
An integrated design approach is used at CERN for the design and optimization of superconducting acc...