Field Emission Studies at Saclay and Orsay (p. 1) |
by Tan, J |
Thermometric Study of Electron Emission in A 1.3-ghz superconducting cavity (p. 35) |
by Pekeler, M |
Microscopic Investigation of Field Emitters Located By thermometry in 1.5-ghz Superconducting Niobium Cavities (p. 53) |
by Knobloch, J |
Influence of Surface Roughness and Preparation, Bulk Purity and Heat treatment on Electron Field Emission From Nb and Nb-3_sn (p. 77) |
by Pupeter, N |
Advanced Surface Cleaning Methods - Three Years of Experience with High pressure Ultrapure Water Rinsing of Superconducting Cavities (p. 97) |
by Kneisel, P |
Quest for High Gradients (p. 123) |
by Möller, W D |
Potential of High Temperature Superconductors for Short-term microwave applications (p. 135) |
by Hein, M A |
Progress in thin film techniques (p. 199) |
by Weingarten, Wolfgang |
New Developements in Low Beta Superconducting Structures (p. 217) |
by Palmieri, V |
New Ways of Cavity Fabrication (p. 241) |
by Proch, D |
Production by industry of a large number of superconducting cavities : status and future(p. 253) |
by Chiaveri, Enrico |
RF Input Couplers and Windows : Performances, Limitations, and recent developments(p. 269) |
by Champion, M S |
Operating Experience with Superconducting Cavities in the HERA E-ring (p. 301) |
by Dwersteg, B |
Experience with superconducting rf cavities in LEP (p. 315) |
by Geschonke, Günther |
Experience on the Superconducting RF System in Tristan (p. 325) |
by Noguchi, S |
Operating Experience in SRF Electron Linacs (p. 337) |
by Preble, J |
TESLA Test Facility : status(p. 349) |
by Aune, B |
Application of Superconductivity To Intense Proton Linacs (p. 357) |
by Heinrichs, H |
Status of RF superconductivity work at CERN : laboratory talk(23-25 (vol. 1)) |
by Weingarten, Wolfgang |
Water rinsing of the contaminated superconducting RF cavities (379-383 (vol. 2)) |
by Saitô, K |
Stable performance of 508 MHz superconducting rf cavities for KEK B-factory (419-423 (vol. 2)) |
by Asano, K |
Characteristics of the results of measurement on 1.3 GHz high gradient superconducting cavities (425-429 (vol. 2)) |
by Kako, E |
Analysis of the coating success rate in the series production of Nb/Cu superconducting rf cavities for LEP2 (461-465 (vol. 2)) |
by Schirm, K M |
Dependence of the surface resistance of niobium coated copper cavities on the coating temperature (467-471 (vol. 2)) |
by Darriulat, Pierre |
A device for laser annealing of Nb films in Nb coated Cu cavities (485-489 (vol.2)) |
by Geissler, Kryno K |
Microscopic examination and elemental analysis of surface defects in LEP superconducting cavities (491-495 (vol. 2)) |
by Benvenuti, Cristoforo |
A new material evaluation method on niobium by magnetization measurement (553-557 (vol. 2)) |
by Saitô, K |
Electroacoustic instabilities in the LEP2 superconducting cavities (641-645 (vol. 2)) |
by Boussard, Daniel |
Electroacoustic instabilities in the LEP2 superconducting cavities (641-645 (vol. 2)) |
by Boussard, Daniel |
Gas condensation on cold surfaces, a source of multipacting discharges in the LEP2 power coupler (707-711 (vol. 2)) |
by Häbel, E |
Investigation on barrel polishing for superconducting niobium cavities (723-727 (vol. 2)) |
by Higuchi, T |
Superconducting accelerating cavity for KEK B-factory (729-733 (vol. 2)) |
by Furuya, T |
Status of the seamless L-band cavity fabrication at KEK (741-745 (vol. 2)) |
by Fujino, T |
Activities of high gradient SC cavities at KEK |
by Kako, E |