Paper |
Title |
Other Keywords |
Page |
MO1-02 |
The SSC Linac
|
linac, emittance, controls, DTL |
8 |
|
- L.W. Funk
SSCL, Dallas, Texas, USA
|
|
MO2-01 |
RFQ Focusing in Linacs
|
focusing, quadrupole, linac, radio-frequency |
21 |
|
- V.A. Tepliakov
IHEP, Moscow, Russia
|
|
MO4-06 |
High-Current Direct Injection to a CW RFQ Using an ECR Proton Source
|
ion, ion-source, proton, extraction |
52 |
|
- G.M. Arbique, A.D. Davidson, T. Taylor, J.S.C. Wills
Atomic Energy of Canada, Chalk River, Ontario, Canada
|
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MO4-07 |
Beam Parameter Measurements on the CW RFQ1-1250 Accelerator
|
emittance, injection, ion-source, ion |
55 |
|
- G.M. Arbique, B.G. Chidley, G.E. McMichael, J.Y. Sheikh
Atomic Energy of Canada, Chalk River, Ontario, Canada
|
|
MO4-09 |
Commissioning of the Ground Test Accelerator Intertank Matching Section
|
cavity, emittance, diagnostics, linac |
61 |
|
- K.F. Johnson, W.H. Atkins, G.O. Bolme, R. Cole, R. Connolly, J.D. Gilpatrick, W.B. Ingalls, D. Kerstiens, C. Little, R.A. Lohsen, W.P. Lysenko, C.T. Mottershead, J. Power, D.P. Rusthoi, O.R. Sander, D.P. Sandoval, R.R. Stevens, G. Vaughn, Jr., E.A. Wadlinger, R. Weiss, V. Yuan
LANL, Los Alamos, New Mexico, USA
|
|
MO4-10 |
Commissioning of the Ground Test Accelerator RFQ
|
cavity, emittance, simulation, diagnostics |
64 |
|
- K.F. Johnson, W.H. Atkins, G.O. Bolme, S. Brown, R. Connolly, R. Garnett, J.D. Gilpatrick, F.W. Guy, W.B. Ingalls, C. Little, R.A. Lohsen, S. Lloyd, G. Neuschaefer, J. Power, K. Saadatmand, O.R. Sander, D.P. Sandoval, R.R. Stevens, G. Vaughn, Jr., E.A. Wadlinger, R. Weiss, V. Yuan
LANL, Los Alamos, New Mexico, USA
|
|
MO4-11 |
Design Study on an Intense Heavy-Ion Linac System
|
linac, cavity, ion, heavy-ion |
67 |
|
- M. Okamura, T. Hattori, Y. Takahashi, Y. Oguri
Tokyo Institute of Technology, Tokyo, Japan
- K. Satoh, O. Takeda, Y. Tanabe
Toshiba Corporation, Yokohama, Japan
|
|
MO4-20 |
Performance of the SSC Magnetron Ion Source and LEBTS
|
emittance, ion-source, ion, linac |
94 |
|
- K. Saadatmand, P.S. Datte, F.W. Guy, G.E. Jamieson, J.W. Lenz, M.M. Lutfey, N.C. Okay, D. Raparia, J. Sage, S.K. Volz
SSCL, Dallas, Texas, USA
|
|
MO4-28 |
Real-Time Data Archiving for GTA
|
controls, EPICS, status, vacuum |
118 |
|
- R. Cole, W.H. Atkins
LANL, Los Alamos, New Mexico, USA
|
|
MO4-34 |
Analysis of High-Power Conditioning for Accelerator Cavities Using a Six-Port Reflectometer
|
cavity, impedance, RF-structure, coupling |
136 |
|
- G.O. Bolme, P.M. Denney, W.D. Gutscher, S.P. Jachim, K.F. Johnson, C. Little, R.D. Patton, A.H. Regan, O.R. Sander
LANL, Los Alamos, New Mexico, USA
|
|
MO4-35 |
The SAIC PET Isotope Tracer Accelerator Facility
|
ion, target, ion-source, isotope-production |
139 |
|
- W.D. Cornelius, M.J. Donavant, W.K. Hagan, R.C. Parker, S.J. Ringler, S.R. Schmidt, M.E. Schulze, P.E. Young
Science Applications International Corp., San Diego, California, USA
- K.A. Krohn, J.M. Link
University of Washington, Seattle, Washington, USA
|
|
MO4-55 |
SSC Drift-Tube Linac Design
|
DTL, linac, focusing, quadrupole |
199 |
|
- D. Raparia, L.W. Funk, F.W. Guy, G.T. Leifeste
SSCL, Dallas, Texas, USA
|
|
MO4-57 |
Power Handling Capability of Water-Cooled Beam Stops
|
diagnostics, controls, status, neutral-beams |
205 |
|
- T. Tran-Ngoc
Atomic Energy of Canada, Chalk River, Ontario, Canada
|
|
MO4-60 |
Space and Image Charge Calculations for the Chalk River RFQ1-1250 Accelerator Using the RFQTRAK Beam Simulation Program
|
emittance, quadrupole, space-charge, beam-losses |
214 |
|
- N.J. Diserens
Atomic Energy of Canada, Chalk River, Ontario, Canada
|
|
MO4-67 |
Superconducting Super Collider Laboratory SSCL RFQ to DTL Input Matching Section
|
cavity, vacuum, diagnostics, DTL |
235 |
|
- A.D. Ringwall, C.M. Combs
SSCL, Dallas, Texas, USA
|
|
MO4-68 |
Integrated Design of the SSC Linac Injector
|
cavity, vacuum, ion, ion-source |
238 |
|
- D. Evans, R. Valicenti, F.W. Wood
SSCL, Dallas, Texas, USA
|
|
TU4-08 |
Design Study on an RFQ for the Basic Technology Accelerator in JAERI
|
emittance, acceleration, proton, ion |
314 |
|
- K. Hasegawa, M. Mizumoto, H. Murata, K. Sakogawa, H. Yokobori
JAERI, Ibaraki, Japan
|
|
TU4-09 |
Operation of a 473 MHz Four-Rod Cavity RFQ
|
emittance, ion, linac, cavity |
317 |
|
- R. Kazimi, F.R. Huson, W.W. MacKay, C.R. Meitzler
Texas A&M University, College Station, Texas, USA
|
|
TU4-16 |
A Compact ESQ System for Transport and Focusing of H- Beam from Ion Source to RFQ
|
emittance, ion-source, ion, linac |
338 |
|
- S.K. Guharay, C.K. Allen, M. Reiser
University of Maryland, College Park, Maryland, USA
- C.R. Chang, K. Saadatmand
SSCL, Dallas, Texas, USA
|
|
TU4-23 |
Design and Operation of a Bunched-Beam, Phase-Spread Measurement
|
cavity, pick-up, emittance, impedance |
359 |
|
- J.D. Gilpatrick, H. Marquez, J. Power, V. Yuan
LANL, Los Alamos, New Mexico, USA
|
|
TU4-30 |
SSC Linac RFQ RF System
|
cavity, controls, beam-loading, LLRF |
380 |
|
- R.I. Cutler, J. Grippe, O. Marrufo, S. Marsden, J. Mynk, R. Rodriguez, M. Tomek
SSCL, Dallas, Texas, USA
|
|
TU4-41 |
Funneling of Low Energy Ion Beams
|
emittance, ion, simulation, injection |
413 |
|
- W. Barth, A. Schempp
IAP, Frankfurt am Main, Germany
|
|
TU4-42 |
The High Current Spiral-RFQ Prototype
|
GSI, UNILAC, ion, SIS |
416 |
|
- A. Kipper, H. Deitinghoff, O. Engels, A. Firjahn-Andersch, J. Madlung, A. Schempp, H. Vormann
IAP, Frankfurt am Main, Germany
|
|
TU4-46 |
Design for a Superconducting Niobium RFQ Structure
|
niobium, ATLAS, quadrupole, dipole |
441 |
|
- K.W. Shepard, W.L. Kennedy, L. Sagalovsky
ANL, Argonne, Illinois, USA
|
|
TU4-53 |
Commissioning Plans for SSC Linac
|
linac, diagnostics, DTL, CCL |
462 |
|
- J.W. Hurd, R.L. Aprile, C.R. Chang, C.E. Crist, R.I. Cutler, L.W. Funk, F.W. Guy, G.T. Leifeste, D. Raparia, K. Saadatmand, R.C. Sethi, D.A. Swenson, J.F. Tooker, C.G. Yao
SSCL, Dallas, Texas, USA
|
|
TU4-55 |
High Speed Resonant Frequency Determination Applied to Field Mapping Using Perturbation Techniques
|
linac, cavity, quadrupole, coupling |
468 |
|
- B.H. Smith, R.J. Burton, R.M. Hutcheon
Atomic Energy of Canada, Chalk River, Ontario, Canada
|
|
TU4-60 |
Design of the RFQ-DTL Matching Section for the SSCL Linac
|
emittance, DTL, cavity, linac |
483 |
|
- R.C. Sethi, L.W. Funk, F.W. Guy, D. Raparia
SSCL, Dallas, Texas, USA
|
|
TU4-66 |
End to End Simulation for the SSC Linac
|
emittance, linac, CCL, DTL |
501 |
|
- D. Raparia, C.R. Chang, L.W. Funk, F.W. Guy
SSCL, Dallas, Texas, USA
- S. Nath, G. Neuschaefer
LANL, Los Alamos, New Mexico, USA
|
|
TU4-70 |
Do Image Fields Affect RFQ Efficiency?
|
quadrupole, betatron, emittance, ion |
513 |
|
- P. Junior, H. Deitinghoff, A. Harth
IAP, Frankfurt am Main, Germany
|
|
WE1-01 |
Commissioning the GTA Accelerator
|
cavity, DTL, emittance, focusing |
535 |
|
- O.R. Sander, W.H. Atkins, G.O. Bolme, S. Bowling, S. Brown, R. Cole, R. Connolly, J.D. Gilpatrick, R. Garnett, F.W. Guy, W.B. Ingalls, K.F. Johnson, D. Kerstiens, C. Little, R.A. Lohsen, S. Lloyd, W.P. Lysenko, C.T. Mottershead, G. Neuschaefer, J. Power, D.P. Rusthoi, K. Saadatmand, D.P. Sandoval, R.R. Stevens, G. Vaughn, E.A. Wadlinger, R. Weiss, V. Yuan
LANL, Los Alamos, New Mexico, USA
|
|
WE1-03 |
The Application of RFQs
|
ion, linac, heavy-ion, focusing |
545 |
|
- A. Schempp
IAP, Frankfurt am Main, Germany
|
|
TH1-02 |
The High Charge State Injector for GSI
|
ion, GSI, linac, emittance |
570 |
|
- J. Klabunde
GSI, Darmstadt, Germany
|
|
TH2-01 |
The Transfer of Accelerator Technology to Industry
|
LANL, BNL, ion, ion-source |
587 |
|
- A. Favale
Grumman Aerospace Corporation, Bethpage, New York, USA
|
|
TH4-03 |
Performance of the GSI HLI-RFQ
|
emittance, GSI, ion, UNILAC |
609 |
|
- J. Friedrich, U. Bessler, H. Deitinghoff, H. Klein, A. Schempp, R. Veith
IAP, Frankfurt am Main, Germany
- N. Angert, J. Klabunde
GSI, Darmstadt, Germany
|
|
TH4-08 |
Operating Characteristics of the ICR Proton Linac
|
DTL, proton, vacuum, cavity |
624 |
|
- Y. Iwashita, T. Shirai, H. Dewa, H. Okamoto, A. Noda, H. Fujita, S. Kakigi, M. Inoue
Kyoto University, Uji, Kyoto, Japan
|
|
TH4-09 |
Superconducting RFQ Development at Los Alamos
|
cavity, focusing, niobium, acceleration |
627 |
|
- T.P. Wangler, A. Cimabue, J. Merson, R.S. Mills, R. Wood, L.M. Young
LANL, Los Alamos, New Mexico, USA
|
|
TH4-17 |
Design Recommendations for Low-Energy Components of ESNIT and OMEGA
|
proton, emittance, ion, ion-source |
651 |
|
- T. Taylor, B.G. Chidley, G.E. McMichael
Atomic Energy of Canada, Chalk River, Ontario, Canada
|
|
TH4-18 |
Optical Beam Sensors for RFQ1-1250
|
injection, ion-source, ion, extraction |
654 |
|
- G.M. Arbique, B.G. Chidley, W.L. Michel, B.H. Smith
Atomic Energy of Canada, Chalk River, Ontario, Canada
|
|
TH4-25 |
Image Processing and Computer Controls for Video Profile Diagnostic System in the Ground Test Accelerator (GTA)
|
controls, diagnostics, linac, vacuum |
674 |
|
- R. Wright, S. Brown, H. Gibson, J.D. Gilpatrick, D.P. Sandoval, M.E. Zander
LANL, Los Alamos, New Mexico, USA
|
|
TH4-27 |
RF System Description for the Ground Test Accelerator Radio-Frequency Quadrupole
|
controls, cavity, LLRF, cathode |
680 |
|
- A.H. Regan, D. Brittain, D.E. Rees, C.D. Ziomek
LANL, Los Alamos, New Mexico, USA
|
|
TH4-31 |
Design and Modeling of Superconducting RFQ Structures
|
quadrupole, dipole, superconducting-RF, coupling |
692 |
|
- J.R. Delayen, W.L. Kennedy
ANL, Argonne, Illinois, USA
|
|
TH4-33 |
Half End-Cell Geometry of RFQ
|
simulation, ion, linac, focusing |
698 |
|
- Y. Iwashita
Kyoto University, Uji, Kyoto, Japan
- H. Fujisawa
Nissin Electric Co., Ltd., Kyoto, Japan
|
|
TH4-37 |
Tuning and Conditioning of RFQ1-1250 Cavity
|
cavity, coupling, quadrupole, dipole |
710 |
|
- J.Y. Sheikh, R.J. Burton
Atomic Energy of Canada, Chalk River, Ontario, Canada
|
|
TH4-38 |
RF Field Measurement of a Four-Vane Type RFQ with PISLs
|
cavity, dipole, quadrupole, linac |
713 |
|
- A. Ueno, Y. Yamazaki
KEK, Ibaraki, Japan
|
|
TH4-42 |
Transition Fittings Between Aluminium and Stainless Steel Components of Cryogenic Accelerators
|
cryogenics, controls, cavity, SCL |
725 |
|
- W.E. Fox, N.K. Bultman
LANL, Los Alamos, New Mexico, USA
|
|
TH4-45 |
A Computing Optimization System for Ion Linac Accelerating/Focusing Channels
|
linac, focusing, ion, simulation |
734 |
|
- B.P. Murin, B.B. Bondarev, A.P. Durkin, G.T. Nikolaishvilli, T.N. Tsygankova, O.Yu. Shlygin
Radiotechnical Institute of the Russian Academy of Sciences, Moscow, Russia
|
|
TH4-50 |
High Intensity Proton Accelerator for Nuclear Waste Transmutation
|
proton, DTL, neutron, target |
749 |
|
- M. Mizumoto, K. Hasegawa, H. Mino, H. Murata, T. Nishida, H. Oguri, Y. Okumura, K. Sakogawa, H. Takada, T. Takizuka, H. Yokobori
JAERI, Ibaraki, Japan
|
|
TH4-56 |
RF Characteristics of the 33.3 MHz 4-Rod RFQ
|
cavity, quadrupole, ion, linac |
766 |
|
- H. Fujisawa, M. Tamada
Nissin Electric Co., Ltd., Kyoto, Japan
- M. Inoue, Y. Iwashita, A. Noda
Kyoto University, Uji, Kyoto, Japan
|
|
TH4-63 |
Graphical User Interface for TRACE 3-D Incorporating Some Expert System Type Features
|
controls, emittance, optics, quadrupole |
787 |
|
- G.H. Gillespie, B.W. Hill
G.H. Gillespie Associates, Inc., Del Mar, California, USA
|
|
TH4-70 |
Linear Accelerator for Production of Radioactive Beams
|
ion, focusing, linac, acceleration |
808 |
|
- S.K. Esin, D.V. Gorelov, A.S. Iljinov, V.A. Moiseev, P.N. Ostroumov, G.N. Vjalov
INR, Moscow, Russia
- V.A. Bomko, A.F. Djachenko
Kharkov Physical Technical Institute, Kharkov, Ukraine
|
|
TH4-71 |
H- Injector for ADRIA
|
linac, DTL, cavity, injection |
811 |
|
- I.M. Kapchinsky
ITEP, Moscow, Russia
- A. Lombardi, A. Pisent
INFN/LNL, Legnaro (PD), Italy
|
|