Title |
Other Keywords |
Page |
Mechanical Design Concepts of Dynamitron Accelerators |
field, insertion, ion, vacuum |
157 |
|
|
X-Radiation from Van De Graaff Accelerator Ion Sources |
Van de Graaff, accelerator, ion, x-ray |
181 |
- D.L. Bernard, J.L. Rinehart, N. Vo Long
|
|
The Development of 2000 - Ampere Diodes for High Current Ferrite Biasing Supplies |
accelerator, ferrite, impedance, injection |
320 |
- R.F. Tusting, J.E. Katz, Q. Kerns
|
|
Pole-Zero Analysis of Distributed Radio-Frequency Acceleration Systems |
acceleration, accumulation, impedance, radio-frequency |
328 |
|
|
The Future of Superconducting Magnets |
accelerator, field, quadrupole, superconducting magnet |
361 |
|
|
Secondary Beam Magnets for the 200 - BeV Accelerator -- Conventional or Superconducting? |
accelerator, field, quadrupole, septum |
372 |
|
|
Effect of Fast Neutron Irradiation at Low Temperature on NbZr Coil Performance |
cyclotron, irradiation, neutron, quench |
383 |
- R. Benaroya, T.H. Blewitt, J.M. Brooks, C. Laverick
|
|
Copper-Tape-Wound, Edge-Cooled Solenoid |
field, solenoid, thermal |
393 |
- D.W. Morris, J.T. Tanabe, E. Zajec
|
|
Use of Aluminum Coils Instead of Copper Coils in Accelerator Magnet Systems |
accelerator, field, storage-ring, synchrotron |
398 |
|
|
A Prestressed -Core Hollow-Strap-Coil Test Magnet for the Omnitron |
field, storage-ring, synchrotron, vacuum |
405 |
|
|
A New Hydrodynamic Liquid Cooling Method for Edge-Cooled, Flat Conductor Magnet Coils and for Liquid-Cooled Ferrite RF Resonator Discs |
ferrite, impedance, thermal |
410 |
|
|
A Turbine Driven Rotating Coil Magnetometer |
accelerator, alignment, coupling, field |
478 |
- E.M. Rowe, G.E. Bush, J.W. Hicks
|
|
Revised Linac Beam Dynmics Equations |
field, linac, proton |
557 |
|
|
Space Charge Defocussing of Bunched Beams |
electron, field, impedance, ion |
607 |
|
|
A Small Helium-3 Cyclotron |
cyclotron, field, ion, vacuum |
733 |
- R.M. Main, M.R. Curtis, R. Grazier, P.B. Kennedy, B.H. Smith, D.A. Spence
|
|
The Operational Experience with Nimrod |
extraction, kicker, target, vacuum |
743 |
|
|
Intense, Nanosecond Electron Beams |
electron, field, focusing, target |
789 |
- F.M. Charbonnier, J.P. Barbour, J.L. Brewster, W.P. Dyke, F.J. Grundhauser
|
|
A Vacuum Chamber System for High Radiation Environment |
field, synchrotron, thermal, vacuum |
804 |
- W.B. Hanson, J.S. Moenich, A. Rohrmayer
|
|
A Ceramic Vacuum Chamber for a Fast-Cycling Proton Synchrotron |
accelerator, booster, synchrotron, vacuum |
809 |
- P.T. Clee, H.P. Hernandez
|
|
Experience with Metal and Epoxy Vacuum Chambers and the Development of Alumina Ceramic Vacuum Chambers at the CEA |
accelerator, electron, synchrotron, vacuum |
815 |
|
|
Vacuum Behaviour of Various Materials with Radiation and Heat |
accelerator, factory, spectrum, vacuum |
821 |
- C.L. Gould, J.C. Schuchman
|
|
Conversion of AGS Ring to Modular Construction |
field, insertion, maintenance, vacuum |
867 |
|
|
Capability vs Cost for Servicing and Handling System Choices in 200 - BeV Accelerator Design Study |
accelerator, extraction, shielding, vacuum |
887 |
|
|
Handling High Power Electron Beams |
accelerator, electron, thermal, vacuum |
908 |
|
|
Design, Construction, and Early Operating Experience of the SLAC Beam Switchyard and Experimental Areas |
accelerator, electron, shielding, vacuum |
918 |
- H. Weidner, J. Harris, E.J. Seppi
|
|
Beam Dumps, Energy Slits and Collimators at SLAC - - Their Final Versions and First Performance Data |
alignment, electron, thermal, vacuum |
923 |
- D.R. Walz, L.R. Lucas, E.J. Seppi, R.J. Vetterlein, H.A. Weidner
|
|
Water Cooled Targets for Intense Ion Beams |
ion, neutron, target, thermal |
933 |
- P.R. Hanley, A.W. Haberl, A. Taylor
|
|
High Current Target for Positive Ion Accelerators |
ion, neutron, proton, target |
943 |
- R.F. Seiler, M.R. Cleland, H.E. Wegner
|
|
Secondary Beam Targetry Developments |
accelerator, field, proton, target |
955 |
|
|
Targetry Used on the Bevatron to Extract Secondary Experimental Beams |
damping, field, target, vacuum |
960 |
|
|
Radiation Problems with High-Energy Proton Accelerators |
accelerator, proton, shielding, target |
965 |
|
|
Residual Radiation Studies for Medium Energy Proton Accelerators |
accelerator, cyclotron, proton, target |
977 |
- C.B. Fulmer, J.B. Ball, I.R. Williams
|
|
A Survey of Radiation Doses and Induced Activity at the ZGS from September 1965 to September 1966 |
neutron, survey, thermal, vacuum |
985 |
|
|
Remote Maintenance Techniques Proposed for the 200 - GeV Accelerator |
accelerator, ion, maintenance, vacuum |
997 |
|
|
Automatically and Remotely Welded and Removable Weld Flange Vacuum Joint |
accelerator, alignment, synchrotron, vacuum |
1004 |
|
|
The AGS Magnet Enclosure Beam Spill and Personnel Saftey Monitor |
maintenance, monitoring, synchrotron, target |
1010 |
- C. Distenfeld, R. Colvett, J. Lamplough
|
|
The NBS Linac Master Control and Personnel Protection System |
accelerator, linac, monitoring, shielding |
1016 |
|
|
The Control System for the Stanford Linear Accelerator |
accelerator, klystron, maintenance, monitoring |
1022 |
|
|
Computer Control of the Los Alamos Linear Accelerator |
accelerator, instrumentation, klystron, proton |
1030 |
|
|
Digital Computer Control of the Bevatron Inflection System |
accelerator, controls, emittance, ion |
1044 |
- H.D. Lancaster, D.R. Machen
|
|
Data Transmission Across High Voltage Interfaces Via Light Links |
acceleration, feedback, ion, timing |
1074 |
|
|
The SLAC Long Ion Chamber System for Machine Protection |
accelerator, electron, ion, positron |
1096 |
|
|
High Current Beam Scanner |
accelerator, alignment, electron, ion |
1099 |
- H.E. Wegner, I.L. Feigenbaum
|
|
A Low Frequency Beam Position Monitor |
accelerator, beam position monitor, electron, thermal |
1106 |
- L. Johnston, J. Faust, W. Pierce, M. Stangenes
|
|
Beam Monitors Based on Light Observation for the Beam Switchyard of the Stanford Two-Mile Linear Accelerator |
accelerator, electron, synchrotron, vacuum |
1111 |
|
|
Measurement and Monitoring of the Ejected Proton Beam "58" of the CERN Proton Synchrotron |
feedback, instrumentation, monitoring, proton |
1155 |
- V. Agoritsas, S. Battisti, C. Bovet, D. Dekkers, L. Henny, L. Hoffmann, K.H. Reich, W. Riezler, J. Robert, M. van Rooy
|
|