The Ultra Compact Synchrotron (UCS), proposed for UCLA, is a compact 1.5 GeV electron light source with superconducting magnets to produce X rays with a critical energy of about 10 keV. The design physical length (cold length) for the dipole is 418 mm. The synchrotron requires that a uniform field be produced in a region that is 180 mm wide by 40 mm high by about 380 mm long. The end regions of the dipole should be short compared to the overall length of the dipole field region. A Vobly H type of dipole was selected for the synchrotron bending magnets. In order for each dipole to bend a 1.5 GeV electron beam 30 degrees, the central induction must be in the range of 6.4 to 6.9 T (depending on the dipole magnetic length). The pole width for t...
Design of a short-pulse dipole magnet for a compact proton synchrotron dedicated for cancer therapy ...
The Facility for Anti-proton and Ion Research (FAIR), under development at GSI, includes the synchro...
This report deals with the R&D activities aimed at developing the high field rapidly-cycling super-c...
Abstract: Compact electron storage rings with strongly curved superconducting dipole magnets have be...
This report describes the design for a 7.2 tesla superconducting dipole magnet for a compact synchro...
Compact light sources are being proposed for protein crystallography, medical imaging, nano-machinin...
High intensity, high energy X-rays for use in protein crystallography, nano-machining and medical ap...
A project to develop a compact heavy ion therapy device has been initiated at the National Institute...
This paper describes the design of a compact electron synchrotron light source for producing X-rays ...
A compact proton and carbon ion synchrotron development program is approved in 2001 to promote the a...
DttRP.4:o develop a compact ekczon storage ring to be used as a X-Ray source for producing high dens...
A compact synchrotron is now under development at the Nation-al Institutes for Quantum Science and T...
Design activities, conductor R&D and model coil construction are under way for developing a curved f...
Design activities, conductor R&D and model coil construction are under way for developing a curved f...
Preliminary measurement of the magnetic field in the aperture of the very high-field, short-pulse di...
Design of a short-pulse dipole magnet for a compact proton synchrotron dedicated for cancer therapy ...
The Facility for Anti-proton and Ion Research (FAIR), under development at GSI, includes the synchro...
This report deals with the R&D activities aimed at developing the high field rapidly-cycling super-c...
Abstract: Compact electron storage rings with strongly curved superconducting dipole magnets have be...
This report describes the design for a 7.2 tesla superconducting dipole magnet for a compact synchro...
Compact light sources are being proposed for protein crystallography, medical imaging, nano-machinin...
High intensity, high energy X-rays for use in protein crystallography, nano-machining and medical ap...
A project to develop a compact heavy ion therapy device has been initiated at the National Institute...
This paper describes the design of a compact electron synchrotron light source for producing X-rays ...
A compact proton and carbon ion synchrotron development program is approved in 2001 to promote the a...
DttRP.4:o develop a compact ekczon storage ring to be used as a X-Ray source for producing high dens...
A compact synchrotron is now under development at the Nation-al Institutes for Quantum Science and T...
Design activities, conductor R&D and model coil construction are under way for developing a curved f...
Design activities, conductor R&D and model coil construction are under way for developing a curved f...
Preliminary measurement of the magnetic field in the aperture of the very high-field, short-pulse di...
Design of a short-pulse dipole magnet for a compact proton synchrotron dedicated for cancer therapy ...
The Facility for Anti-proton and Ion Research (FAIR), under development at GSI, includes the synchro...
This report deals with the R&D activities aimed at developing the high field rapidly-cycling super-c...