The magnetic lattice of the TeV electron superconducting linear accelerator (TESLA) will consist of superconducting quadrupoles for beam focusing and superconducting correction dipoles for beam steering, incorporated in the cryostats containing the superconducting cavities. This report describes the design of these magnets, presenting details of the magnetic as well as the mechanical design. The measured characteristics of the TESLA Test Facility (TTF) quadrupoles and dipoles are compared to the results obtained from numerical computations
For the VUV-FEL at the TESLA Test Facility a 30 m long combined function undulator is under construc...
The TESLA Test Facility (TTF), und construction at DESY by an international collaboration, is an R&D...
The conceptional design of the proposed linear electron-positron collider TESLA is based on 9-cell 1...
The magnetic lattice of the TeV electron superconducting linear accelerator (TESLA) will consist of ...
The Tera-eV Energy Superconducting Linear Accelerator (TESLA), a 33 km long superconducting linear e...
We present a preliminary design of the superconducting final focusing quadrupole magnets for TESLA a...
Linear accelerators based on a superconducting technology need various superconducting magnets mount...
The cryostat is the principal building block of the proposed TESLA- superconducting linac. It contai...
The superconducting TESLA linear accelerator will consist of about 1800 cryomodules. Before their in...
The Tera-eV Energy Superconducting Linear Accelerator (TESLA), a 32 km long superconducting linear e...
The conceptional design of the proposed linear electron-positron collider TESLA is based on 9-cell 1...
The conceptional design of the proposed linear electron-positron collider TESLA is based on 9-cell 1...
A principal goal of the ongoing TESLA superconducting linac project is the production of affordable ...
Superconducting accelerator bending magnets in the 4 to 5 tesla field range have been, or are being,...
Model dipole superconducting magnets with central fields above 8 tesla are being developed for futur...
For the VUV-FEL at the TESLA Test Facility a 30 m long combined function undulator is under construc...
The TESLA Test Facility (TTF), und construction at DESY by an international collaboration, is an R&D...
The conceptional design of the proposed linear electron-positron collider TESLA is based on 9-cell 1...
The magnetic lattice of the TeV electron superconducting linear accelerator (TESLA) will consist of ...
The Tera-eV Energy Superconducting Linear Accelerator (TESLA), a 33 km long superconducting linear e...
We present a preliminary design of the superconducting final focusing quadrupole magnets for TESLA a...
Linear accelerators based on a superconducting technology need various superconducting magnets mount...
The cryostat is the principal building block of the proposed TESLA- superconducting linac. It contai...
The superconducting TESLA linear accelerator will consist of about 1800 cryomodules. Before their in...
The Tera-eV Energy Superconducting Linear Accelerator (TESLA), a 32 km long superconducting linear e...
The conceptional design of the proposed linear electron-positron collider TESLA is based on 9-cell 1...
The conceptional design of the proposed linear electron-positron collider TESLA is based on 9-cell 1...
A principal goal of the ongoing TESLA superconducting linac project is the production of affordable ...
Superconducting accelerator bending magnets in the 4 to 5 tesla field range have been, or are being,...
Model dipole superconducting magnets with central fields above 8 tesla are being developed for futur...
For the VUV-FEL at the TESLA Test Facility a 30 m long combined function undulator is under construc...
The TESLA Test Facility (TTF), und construction at DESY by an international collaboration, is an R&D...
The conceptional design of the proposed linear electron-positron collider TESLA is based on 9-cell 1...