International audienceIn this article, we present a method to design a coil producing an arbitrarily shaped magnetic field by restricting the path of the coil's wires to a regular grid. The solution is then found by a simple least squares minimum. We discuss practical applications, in particular, in the active magnetic field stabilization system of the neutron electric dipole moment experiment at the Paul Scherrer Institute in Villigen, Switzerland. We also publish the software implementation of the method
We study the coil lay-outs of superconducting dipoles for particle accelerators based on the sector ...
Goal: This research introduces an original method for the design of MRI gradient coils that reduces ...
Goal: This research introduces an original method for the design of MRI gradient coils that reduces ...
International audienceIn this article, we present a method to design a coil producing an arbitrarily...
In this article, we present a method to design a coil producing an arbitrarily shaped magnetic field...
Adaptable, low-cost, coils designed by carefully selecting the arrangements and geometries of simple...
International audienceWe propose an optimization method to design an elongated three-axes magnetic f...
In the design of superconducting accelerator magnets, the shape of the coil cross section is mainly ...
This paper proposes a simple semi-analytical method for designing coil-systems for homogeneous magne...
The field in coil-dominated superconducting magnets can be maximized by optimizing the coil shape. I...
A globally optimal superconducting magnet coil design procedure based on the Minimum Stored Energy (...
Abstrac t-A strategy to design a particular form of magnetic field along an axis from a coaxial indu...
International audienceThe Low Temperature Superconducting (LTS) coils are designed to produce strong...
One method of obtaining a uniform magnetic field is by means of a double coil. This consists of two ...
© 2017 ACES. This paper describes an algorithm to design a planar, concentric coil that generates a ...
We study the coil lay-outs of superconducting dipoles for particle accelerators based on the sector ...
Goal: This research introduces an original method for the design of MRI gradient coils that reduces ...
Goal: This research introduces an original method for the design of MRI gradient coils that reduces ...
International audienceIn this article, we present a method to design a coil producing an arbitrarily...
In this article, we present a method to design a coil producing an arbitrarily shaped magnetic field...
Adaptable, low-cost, coils designed by carefully selecting the arrangements and geometries of simple...
International audienceWe propose an optimization method to design an elongated three-axes magnetic f...
In the design of superconducting accelerator magnets, the shape of the coil cross section is mainly ...
This paper proposes a simple semi-analytical method for designing coil-systems for homogeneous magne...
The field in coil-dominated superconducting magnets can be maximized by optimizing the coil shape. I...
A globally optimal superconducting magnet coil design procedure based on the Minimum Stored Energy (...
Abstrac t-A strategy to design a particular form of magnetic field along an axis from a coaxial indu...
International audienceThe Low Temperature Superconducting (LTS) coils are designed to produce strong...
One method of obtaining a uniform magnetic field is by means of a double coil. This consists of two ...
© 2017 ACES. This paper describes an algorithm to design a planar, concentric coil that generates a ...
We study the coil lay-outs of superconducting dipoles for particle accelerators based on the sector ...
Goal: This research introduces an original method for the design of MRI gradient coils that reduces ...
Goal: This research introduces an original method for the design of MRI gradient coils that reduces ...