Title |
Other Keywords |
Page |
Increasing the Relevance of Data Presented to the Operators in an Accelerator Control System |
accelerator, field, proton, software |
1082 |
|
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Problem of Work on a High Energy Synchrotron Submitted to Large Radiation Dose |
accelerator, proton, radiation, radioactivity |
1100 |
|
|
Superconducting Cavities for Synchrotron Use |
accelerator, electron, field, vacuum |
1141 |
- J. Kirchgessner, H. Padamsee, H.L. Phillips, D. Rice, R. Sundelin, M. Tigner, E. von Borstel
|
|
The ESCAR Helium Refrigeration System |
accelerator, quench, thermal, vacuum |
1168 |
|
|
Design and Operation of the SPEAR II RF System |
accelerator, coupling, feedback, klystron |
1269 |
- M.A. Allen, R.A. Ecken, L. Genova, B.E. Humphrey, L.G. Karvonen, G.T. Konrad, J.V. Lebacqz, R.A. McConnell, C.W. Olson
|
|
An Inexpensive Pulsed Power Supply for a Septum Magnet |
booster, damping, proton, septum |
1307 |
|
|
A Pulsed Extraction Magnet System at the Zero Gradient Synchrotron (ZGS) |
accelerator, extraction, proton, software |
1313 |
- M. Knott, L. Lewis, C. Potts
|
|
Evoution of the RF System of the CPS Booster Since the Beginning of Its Operation |
acceleration, controls, damping, ion |
1334 |
- G. Gelato, L. Magnani, G. Nassibian, F. Pedersen, D. Zanaschi
|
|
Report on DORIS |
betatron, field, injection, luminosity |
1363 |
|
|
SPEAR II Performance |
accelerator, betatron, injection, instability |
1366 |
|
|
Chromaticity Correction in EPIC |
betatron, lattice, luminosity, sextupole |
1433 |
- M.H.R. Donald, M.R. Harold, J. Maidment, G.H. Rees
|
|
Transverse Oscillations Damping with Wide-Band Feedback on SPEAR II |
betatron, damping, feedback, vacuum |
1500 |
|
|
Vacuum System for the Stanford-LBL Storage Ring (PEP) |
insertion, ion, radiation, vacuum |
1540 |
- D. Bostic, U. Cummings, N. Dean, B. Jeong, J. Jurow
|
|
A 53 MHz Randomly Triggered Synchronous Predetermined Scaler for Accelerator Diagnostics |
accelerator, diagnostics, feedback, timing |
1578 |
|
|
The Design of the Zero Gradient Synchrotron Booster II Ring Magnet |
booster, field, focusing, injection |
1613 |
- M.H. Foss, R.J. Lari, J. Simpson, K. Thompson
|
|
Preliminary Design of a Dedicated Synchrotron Radiation Facility |
electron, field, lattice, radiation |
1765 |
- R. Chasman, G.K. Green, E.M. Rowe
|
|
Design and Performance of the Stanford Synchrotron Radiation Project (SSRP) |
radiation, shielding, vacuum, x-ray |
1794 |
- A.D. Baer, M. Baldwin, N. Dean, R. Gaxiola, A. Golde, J. Harris, E. Hoyt, B. Humphrey, F. Johnson, J. Jurow, R. Melen, J. Miljan, B. Salsburg, G. Warren, H. Winick
|
|
A Purpose Built Storage Ring for Synchrotron Radiation Research |
booster, klystron, radiation, wiggler |
1817 |
- Daresbury Synchrotron Radiation Source Design Group
|
|
Beam Energy Loss to Parasitic Modes in SPEAR II |
accelerator, coupling, rf cavities, vacuum |
1838 |
- M.A. Allen, J.M. Paterson, J.R. Rees, P.B. Wilson
|
|
Beam Dynamics Experiments in the PS Booster |
booster, emittance, instability, linac |
1855 |
- J. Gareyte, L. Magnani, F. Pedersen, F. Sacherer, K. Schindl
|
|
Computer Simulation of the Interaction of a Superconducting Synchrotron Magnet Good Field Region with a Particle Beam |
accelerator, field, ion, simulation |
1881 |
|
|
Control of Closed Orbit Deviation Due to Synchrotron Radiation |
betatron, insertion, luminosity, radiation |
1914 |
- M.J. Lee, P.L. Morton, J.R. Rees, B. Richter
|
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