Permanent magnet quadrupoles (PMQs) are an alternative to common electromagnetic quadrupoles especially for fixed rigidity beam transport scenarios at particle accelerators. Using those magnets for experimental setups can result in certain scenarios, in which a PMQ itself may be exposed to a large amount of primary and secondary particles with a broad energy spectrum, interacting with the magnetic material and affecting its magnetic properties. One specific scenario is proton microscopy, where a proton beam traverses an object and a collimator in which a part of the beam is scattered and deflected into PMQs used as part of a diagnostic system. During the commissioning of the PRIOR (Proton Microscope for Facility for Antiproton and Ion Resea...
This thesis focuses on radiation degradation studies of polyimide, polyepoxy/glass-fiber composites ...
High brilliance in the 3GeV new light source NSLS II is obtained from the high magnetic fields in in...
High energy protons of 10 to 50 GeV can be used to radiograph dense objects. Because the transmitted...
Permanent magnet quadrupoles (PMQs) are an alternative to common electromagnetic quadrupoles especia...
Proton radiography techniques in use at Los Alamos National Lab and elsewhere depend upon permanent ...
The use of proton beams in several modern technologies to probe or modify the properties of material...
Monte Carlo calculations of proton irradiation of permanent magnets for the TRADE experiment have be...
Permanent magnets which show the highest magnetic flux density, have been used in constructing an in...
The authors describe how protons with energies of 800 MeV or greater can be used as radiographic pro...
A high-magnification high-resolution option is desirable for the study of small-scale dynamic experi...
A new Proteus (IBA) proton therapy facility will be installed at the Charleroi hospital in Belgium. ...
Protons having energies in the GeV range have been proposed as an alternative to Bragg-peak hadron t...
Advances in rare earth permanent magnet (REPM) technology have made possible new applications. Two s...
A large fraction of the total power consumption of the CLIC machine is taken up by electro- magnets....
Purpose: Given its sensitivity to anatomical variations, proton therapy is expected to benefit great...
This thesis focuses on radiation degradation studies of polyimide, polyepoxy/glass-fiber composites ...
High brilliance in the 3GeV new light source NSLS II is obtained from the high magnetic fields in in...
High energy protons of 10 to 50 GeV can be used to radiograph dense objects. Because the transmitted...
Permanent magnet quadrupoles (PMQs) are an alternative to common electromagnetic quadrupoles especia...
Proton radiography techniques in use at Los Alamos National Lab and elsewhere depend upon permanent ...
The use of proton beams in several modern technologies to probe or modify the properties of material...
Monte Carlo calculations of proton irradiation of permanent magnets for the TRADE experiment have be...
Permanent magnets which show the highest magnetic flux density, have been used in constructing an in...
The authors describe how protons with energies of 800 MeV or greater can be used as radiographic pro...
A high-magnification high-resolution option is desirable for the study of small-scale dynamic experi...
A new Proteus (IBA) proton therapy facility will be installed at the Charleroi hospital in Belgium. ...
Protons having energies in the GeV range have been proposed as an alternative to Bragg-peak hadron t...
Advances in rare earth permanent magnet (REPM) technology have made possible new applications. Two s...
A large fraction of the total power consumption of the CLIC machine is taken up by electro- magnets....
Purpose: Given its sensitivity to anatomical variations, proton therapy is expected to benefit great...
This thesis focuses on radiation degradation studies of polyimide, polyepoxy/glass-fiber composites ...
High brilliance in the 3GeV new light source NSLS II is obtained from the high magnetic fields in in...
High energy protons of 10 to 50 GeV can be used to radiograph dense objects. Because the transmitted...