Title |
Other Keywords |
Page |
Impact of Accelerators on Technology |
accelerator, implantation, ion, radiation |
36 |
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|
Support of Research on and with Accelerators |
accelerator, field, ion, synchrotron |
40 |
|
|
Progress on RF Electron Superconducting Accelerators |
accelerator, field, linac, microtron |
44 |
|
|
Electron Multiplication in Cavities |
field, simulation, spectrum, x-ray |
54 |
- I. Ben-Zvi, J.F. Crawford, J.P. Turneaure
|
|
Investigations of a Superconducting Beam Tube Niobium Cavity at S-Band |
field, scattering, thermal, vacuum |
63 |
- P. Kneisel, J. Halbritter, O. Stoltz
|
|
Superconducting Niobium Cavities Prepared by Electropolishing and Anodizing |
field, proton, x-band |
68 |
- H. Diepers, H. Martens, O. Schmidt, K. Schnitzke, Y. Uzel
|
|
Experience in Recirculating Electrons through a Superconducting Linac |
chopper, field, linac, recirculation |
81 |
|
|
Beam Breakup in a 55-Cell Superconducting Accelerator Structure |
accelerator, coupling, field, impedance |
86 |
- K. Mittag, H.D. Schwarz, H.A. Schwettman
|
|
Superconducting Niobium Deflectors |
field, impedance, superconductivity, x-band |
95 |
- J.R. Aggus, W. Bauer, S. Giordano, H. Hahn, H.J. Halama
|
|
3 GHz Superconducting Accelerator Cavity for Use in an Electron Synchrotron |
accelerator, field, radiation, synchrotron |
98 |
- R. Sundelin, J. Kirchgessner, D. Rice, M. Tigner, E. von Borstel
|
|
Electron Loading in L- and S- Band Superconducting Niobium Cavities |
field, radiation, sputter, vacuum |
101 |
- C. Lyneis, Y. Kojima, J.P. Turnesure, N.T. Viet
|
|
Pressure Differential Gate Valve |
field, ion, synchrotron, vacuum |
130 |
- J.S. Moenich, J.J. Peerson
|
|
Some Advances in Negative Ion Technology |
extraction, ion, ionization, sputter |
136 |
|
|
Recent Progress in the Performance of the Desy-Electron Synchrotron |
extraction, octupole, photon, synchrotron |
231 |
|
|
A Variable Energy Racetrack Microtron |
accelerator, field, gun, microtron |
260 |
- H.R. Froelich, D.S. Edmonds, J.J. Manca, A.S. Thompson
|
|
Current Understanding of ERA |
acceleration, accelerator, field, instability |
271 |
|
|
The New Garching Fast ERA Experiment |
acceleration, damping, field, instability |
276 |
- C. Andelfinger, W. Hermann, D. Jacobi, A.U. Luccio, W. Ott, U. Schumacher, M. Ulrich
|
|
ERA Research in Japan |
field, injection, linac, vacuum |
280 |
- S. Kawasaki, G. Horikoshi, K. Huke, H. Ishizuka, Y. Kubota, A. Miyahara, H.M. Saad
|
|
Recent Experiments on ERA in Karlsruhe |
acceleration, field, instability, ion |
283 |
- C.-H. Dustmann, H. Krauth, L. Steinbock, W. Zernial
|
|
Production and Dynamics of High Intensity Electron Beams |
field, induction, injection, ion |
286 |
- G. Brautti, I. Boscolo, R. Coisson, M. Leo, A. Luches, A. Tepore
|
|
The Hydra Electron Beam Generator |
accelerator, cathode, field, impedance |
289 |
|
|
Aurora, an Electron Accelerator |
accelerator, cathode, field, vacuum |
294 |
|
|
Further Studies of Collective Acceleration of Positive Particles Using Intense Electron Beams |
acceleration, field, ion, proton |
301 |
- B. Ecker, D. Drickey, S. Putnam
|
|
Ion Acceleration in Electron Beams |
acceleration, cathode, ion, plasma |
305 |
- G.W. Kuswa, L.P. Bradley, G. Yonas
|
|
Status Report on the University of Maryland Electron Ring Accelerator Project |
accelerator, cathode, field, ion |
310 |
|
|
The Problem of Coupling a 120-MHz RF Cavity to a 700-A, 6-MeV Pulsed Electron Beam |
accelerator, coupling, field, impedance |
315 |
- R.K. Cooper, V.K. Neil, L.L. Reginato, B.H. Smith
|
|
Self Fields and Particle Oscillation Frequencies in a Rotating Electron Sheet Beam Loaded with Positive Ions |
equilibrium, field, ion, polarization |
318 |
|
|
Injector for Maryland E R A Project: Design Features and Initial Performance |
cathode, electron gun, field, gun |
321 |
- J.K. Burton, J.J. Condon, F.L. Desrosier, A. C. Greenwald, J.M. Henness, W.H. Lupton, M.J. Rhee, G.T. Zorn
|
|
Stopping of an Electron Ring by Induced Image Currents in Resistive Wire Loops |
damping, field, focusing, ion |
324 |
- J.G. Kalnins, H. Kim, J.G. Linhart
|
|
Envelope Instabilities in Relativistic Electron Rings |
equilibrium, field, instability, ion |
327 |
|
|
Negative Mass Instability in Hollow Cylinders |
equilibrium, field, instability |
330 |
|
|
Generation and Diagnosis of TW/cm 2 Electron Beams |
cathode, field, focusing, x-ray |
333 |
- D.G. Pellinen, S.E. Heurlin
|
|
Collective Acceleration of Intense Ion Beams in Vacuum |
acceleration, cathode, neutron, target |
336 |
- J.S. Luce, T.R. Crites, H.L. Sahlin
|
|
An All Solid-State Line-Type Modulator for 10% Duty Factor |
cathode, klystron, linac, modulator |
365 |
- P.J.T. Bruinsma, E. Heine, G.J. Koenderink, J.J. van Koeverden Brouwer
|
|
Klystrons for Accelerator Improvements |
accelerator, ion, klystron, polarization |
369 |
- R.L. Stringall, J.V. Lebacqz, D.L. Russell
|
|
Twin-Tank Accelerator for High-Voltage Electron Microscopy (HVEM) |
accelerator, damping, gun, impedance |
378 |
|
|
An R.F. Modulated Electron Gun for NINA Injection Equipment |
gun, linac, synchrotron, vacuum |
399 |
- D.E. Poole, T.R. Charlesworth, O. Gunnill, D.G. Peters, G. Saxon
|
|
Beam Terminology |
brightness, cathode, emittance, thermal |
403 |
- J.H. Fink, B.W. Schumacher
|
|
A 2nd RF System for Nimrod |
acceleration, ferrite, field, vacuum |
418 |
- E.G. Sandels, R.A. Church, I.S.K. Gardner, H.C. Whitby
|
|
Space Charge Effects in High Current Linear Accelerator Transport Systems |
accelerator, field |
478 |
- G. Mavrogenes, T. Khoe, W. Wesolowski
|
|
A.300 GeV High Quality Electron and Pion Beam at the New Generation Proton Accelerators |
pion, radiation, synchrotron, target |
483 |
- Z.G.T. Guiragossian, R.E. Rand
|
|
Operational Aspects of the SLAC Main Control Center |
accelerator, klystron, spectrum, target |
510 |
- K. Crook, T.V. Huang, G. Nelson, V. Price
|
|
Detection of Optical Transition Radiation and Its Application to Beam Diagnostics |
cathode, photon, radiation, transition radiation |
544 |
- L. Wartski, J. Marcou, S. Roland
|
|
RF Phase Control System |
acceleration, field, klystron, synchrotron |
593 |
- R. Sundelin, M. Tigner, E. von Borstel
|
|
Application of Crossbar Relays to the Control of a Buncher Ring |
bunching, factory, focusing, tune |
621 |
- W. Gagnon, H. Lane, L.L. Reginato, B.H. Smith
|
|
Monitoring the Beams in SPEAR with Synchrotron Light |
accelerator, optics, shielding, synchrotron |
638 |
|
|
Thin Film Mapping of Electron Accelerators |
accelerator, laser, linac, radiation |
645 |
|
|
High Energy Low Intensity Beam Profile Monitor |
beam profile monitor, dielectric, instability, linac |
662 |
|
|
Storage Ring Program in Novosibirsk |
field, injection, positron, radiation |
756 |
|
|
Beam Induced Gas Desorption in the Cern Intersecting Storage Rings |
equilibrium, ion, proton, vacuum |
760 |
|
|
Dependence of Phase Instabilities on Bunch Length at the CEA |
betatron, damping, instability, synchrotron |
765 |
- R. Averill, R. Eddy, A. Hofmann, R. Little, H. Mieras, G. Nicholls, J.M. Paterson, K. Strauch, G.A. Voss, H. Winick
|
|
Isabelle e-p Option |
injection, insertion, luminosity, proton |
777 |
|
|
The Proposed Desy Proton-Electron Colliding Beam Experiment |
acceleration, injection, kicker, proton |
782 |
- A. Febel, H. Gerke, M. Tigner, H. Wiedemann, B.H. Wilk
|
|
PEP Lattice Design |
injection, insertion, lattice, proton |
786 |
- R. Bangerter, A. Garren, P. Morton, J. Rees, L. Smith
|
|
A Method of Analyzing the Momentum and Betatron Amplitude Distributions in a Circulating Beam |
betatron, closed-orbit, injection, x-ray |
790 |
- J.M. Peterson, J.B. Rechen
|
|
Measurements of Stacking Efficiency in the CERN Intersecting Storage Rings (ISR) |
accelerator, scattering, simulation, synchrotron |
796 |
- M.J. de Jonge, E.W. Messerschmid
|
|
Performance of the CEA as an e+e- Storage Ring |
accelerator, betatron, luminosity, synchrotron |
813 |
- R. Averill, W.F. Colby, T.S. Dickinson, A. Hofmann, R. Little, B.J. Maddox, H. Mieras, J.M. Paterson, K. Strauch, G.A. Voss, H. Winick
|
|
Limitation in Short Bunches Production within Electron Storage Rings |
acceleration, betatron, radiation, synchrotron |
822 |
- H. Bruck, J.-P. Bardin, J.F. Gournay, J.L. Laclare, G. Leleux
|
|
Beam Dynamics in the Presence of Ions and Electrons |
accelerator, betatron, instability, proton |
847 |
|
|
Discussion of Beam Dynamics in the Presence of Ions and Electrons |
background, instability, proton, vacuum |
849 |
- F. Amman, J. Le Duff, R. Miller, P.L. Morton, A.M. Sessler, B. Zotter
|
|
The 'Head-Tail' Instability |
betatron, field, instability, synchrotron |
850 |
|
|
Effect of RF Noise on Stored Beams |
betatron, field, proton, synchrotron |
852 |
|
|
High-Intensity Effects in the Longitudinal Motion of Stored Particle Beams |
accelerator, bunching, coupling, impedance |
854 |
|
|
Neutralization of Bunched Proton Beams |
acceptance, focusing, ionization, proton |
866 |
|
|
Normal Oscillating Modes of a One-Dimensional Maxwellian Beam in the Linear Space Charge Approximation |
plasma, plasma physics, proton, spectrum |
882 |
|
|
Prebunching with Space Charge |
bunching, coupling, field, impedance |
895 |
- J.J. Olcese, W.J. Gallagher
|
|
Evaluation of Synchrotron Radiation Integrals |
betatron, damping, field, radiation |
900 |
- R.H. Helm, M.J. Lee, P.L. Morton
|
|
General Design Equations for Isochronous Cyclotrons |
betatron, cyclotron, equilibrium, field |
902 |
|
|
Initial Operation of the MIT Electron Linear Accelerator |
injection, klystron, linac, waveguide |
914 |
|
|
Subnanosecond High-Intensity Beam Pulse |
accelerator, bunching, gun, injection |
919 |
- G. Mavrogenes, G. Clifft, K. Johnson, W. Ramler, W. Wesolowski
|
|
100% Duty Factor Electron Linac |
cw, gun, klystron, linac |
932 |
- J.E.E. Baglin, A.J. Bureau, B.C. Cook, G.E. Holland, R.C. Morrison
|
|
Properties of Disc-Loaded Lines |
accelerator, field, impedance, waveguide |
952 |
|
|
Use of Strong Relativistic Electron Rings for the Confinement of Thermonuclear Plasmas |
field, plasma, scattering, x-ray |
966 |
|
|
Research Using Synchrotron Radiation |
photon, radiation, spectrum, synchrotron |
973 |
|
|
A Free Electron Laser |
field, polarization, radiation, travelling wave |
980 |
- J.M.J. Madey, W.M. Fairbank, H.A. Schwettman
|
|
Synchrotron Radiation at the Cambridge Electron Accelerator |
field, radiation, synchrotron, wiggler |
984 |
|
|
Picosecond Time Measurements with a Linear Accelerator and RF Separator |
optics, quadrupole, target, timing |
994 |
- Z.G.T. Guiragossián, R. Gearhart, J.J. Murray, G. Rothbart, M.R. Yearian
|
|
Shattering Rock with Intense Bursts of Energetic Electrons |
accelerator, field, thermal, vacuum |
1010 |
- R.T. Avery, T.L. Brekke, I. Finnie, D. Keefe
|
|
60 kw Electron Accelerator for a Paint-Curing Facility |
accelerator, cathode, irradiation, radiation |
1015 |
- G. Reinhold, E. Freiberg, R. Gleyvod
|
|
The Racetrack Microtron as a Negative Pion Source for Radiotherapy |
accelerator, klystron, microtron, pion |
1018 |
|
|
Electron Beam Flattening with an Annular Scattering Foil |
accelerator, field, radiation, scattering |
1025 |
|
|
A Tribute to Lev Artsimovich |
accelerator, field, neutron, optics |
1035 |
|
|
Proton-Electron-Positron Design Study |
hadron, insertion, proton, scattering |
1039 |
- The LBL-SLAC Storage Ring Study Group, T. Elioff
|
|
High Energy Physics Horizons |
accelerator, luminosity, proton, target |
1045 |
|
|