Javascript must be enabled to continue!
Progress with High-Field Superconducting Magnets for High-Energy Colliders
View through CrossRef
One of the possible next steps for high-energy physics research relies on a high-energy hadron or muon collider. The energy of a circular collider is limited by the strength of bending dipoles, and its maximum luminosity is determined by the strength of final focus quadrupoles. For this reason, the high-energy physics and accelerator communities have shown much interest in higher-field and higher-gradient superconducting accelerator magnets. The maximum field of NbTi magnets used in all present high-energy machines, including the LHC, is limited to ∼10 T at 1.9 K. Fields above 10 T became possible with the use of Nb3Sn superconductors. Nb3Sn accelerator magnets can provide operating fields up to ∼15 T and can significantly increase the coil temperature margin. Accelerator magnets with operating fields above 15 T require high-temperature superconductors. This review discusses the status and main results of Nb3Sn accelerator magnet research and development and work toward 20-T magnets.
Title: Progress with High-Field Superconducting Magnets for High-Energy Colliders
Description:
One of the possible next steps for high-energy physics research relies on a high-energy hadron or muon collider.
The energy of a circular collider is limited by the strength of bending dipoles, and its maximum luminosity is determined by the strength of final focus quadrupoles.
For this reason, the high-energy physics and accelerator communities have shown much interest in higher-field and higher-gradient superconducting accelerator magnets.
The maximum field of NbTi magnets used in all present high-energy machines, including the LHC, is limited to ∼10 T at 1.
9 K.
Fields above 10 T became possible with the use of Nb3Sn superconductors.
Nb3Sn accelerator magnets can provide operating fields up to ∼15 T and can significantly increase the coil temperature margin.
Accelerator magnets with operating fields above 15 T require high-temperature superconductors.
This review discusses the status and main results of Nb3Sn accelerator magnet research and development and work toward 20-T magnets.
Related Results
Superconducting Magnets ‐ Principles, Operation, and Applications
Superconducting Magnets ‐ Principles, Operation, and Applications
Contemporary technical superconductors provide high Jc in wide range of magnetic fields and temperatures. These features are used in superconducting magnets to produce high fields,...
Vortex pattern in three-dimensional mesoscopic superconducting rings
Vortex pattern in three-dimensional mesoscopic superconducting rings
Vortex structures in a mesoscopic a superconducting ring, which is in the magnetic field generated by a circular electric current, are investigated based on the phenomenological Gi...
Superconductors
Superconductors
AbstractThe article contains sections titled:1.Introduction2.Principles2.1.Electrical Resistance and Thermal Conductivity2.2.Behavior in Magnetic Fields2.3.Critical Current2.4.Ener...
Superconducting Proximity Effect in Magnetic Molecules
Superconducting Proximity Effect in Magnetic Molecules
<p>We studied the transport through magnetic molecules (MM) coupled to superconducting (S), ferromagnetic (F) and normal (N) leads, with the aim of investigating the interpla...
Magnetization And Ac Losses In Superconductors
Magnetization And Ac Losses In Superconductors
Abstract
Magnetization losses in superconducting filaments and other losses in superconductive wires, composites and cables in time-varying magnetic fields are of...
Ultimate Colliders
Ultimate Colliders
Abstract
Understanding the universe critically depends on the fundamental knowledge of particles and fields, which represents a central endeavor of modern high-en...
Instituting Superconducting Qubits for Scientists and Engineers
Instituting Superconducting Qubits for Scientists and Engineers
In the last two decades, a spectacular development in the superconducting qubits has been accomplished experimentally as well as theoretically. The main reason for that is the real...
A Subdomain Physics-Informed Kolmogorov-Arnold Network with Chebyshev Representation for Inhomogeneous Superconducting Electromagnetic Analysis and Constitutive Identification
A Subdomain Physics-Informed Kolmogorov-Arnold Network with Chebyshev Representation for Inhomogeneous Superconducting Electromagnetic Analysis and Constitutive Identification
Accurate analysis of time-varying electromagnetic fields in superconductors under extreme operating conditions is crucial for the reliable design and operation of superconducting d...

