| Paper | Title | Other Keywords | Page | 
    
        | MO3-25 | Transition Section between a 200 MHz Drift Tube Linac and a High Gradient Coupled Cavity Linac for the Fermilab Upgrade | linac, ion, focusing, cavity | 106 | 
    
        |  | 
                J. MacLachlan, F. Mills, L. OleksiukFermilab, Batavia, Illinois, USA
 |  | 
    
        | TU1-04 | Superconducting RF for Direct Acceleration in TeV Colliders | cavity, linac, superconducting-RF, superconducting-cavity | 221 | 
    
        |  | 
                R. SundelinCEBAF, Newport News, Virginia, USA
 |  | 
    
        | TU2-01 | Prospects for RF Applications of High Tc Superconductors | cavity, superconductivity, CEBAF, survey | 227 | 
    
        |  | 
                H. PadamseeCornell University, Ithaca, New York, USA
 |  | 
    
        | WE3-48 | A High Resolution Beam Profile Monitor Using Bremsstrahlung | photon, scattering, linear-collider, radiation | 430 | 
    
        |  | 
                J. NoremANL, Argonne, Illinois, USA
 |  | 
    
        | TH1-01 | Damped Acceleration Cavities | damping, cavity, wakefield, SLAC | 477 | 
    
        |  | 
                R. PalmerBNL, Upton, New York, USA
 |  | 
    
        | TH1-04 | Beam Phenomena at the Interaction Point | luminosity, simulation, electron, linear-collider | 494 | 
    
        |  | 
                K. YokoyaKEK, Ibaraki, Japan
 |  | 
    
        | TH3-32 | Design Constraints for e+e- Supercolliders at Energies of 0.5-2.0 TeV per Linac | linac, luminosity, wakefield, electron | 605 | 
    
        |  | 
                D. Chernin, A. MondelliScience Applications International Corporation, McLean, Virginia, USA
 |  | 
    
        | TH3-38 | The Use of a Single Source to Drive a Binary Peak Power Multiplier | ion, SLAC, linear-collider, plasma | 623 | 
    
        |  | 
                P. LathamUniversity of Maryland, College Park, Maryland, USA
 |  | 
    
        | FR1-01 | B-Factories: A Perspective of B-Physics and Possible Accelerator Design Approaches | luminosity, factory, emittance, synchrotron | 675 | 
    
        |  | 
                R. SiemannCornell University, Ithaca, New York, USA
 |  | 
    
        | FR1-04 | An FEL Power Source for a TeV Linear Collider | wiggler, induction, linac, acceleration | 684 | 
    
        |  | 
                A. Sessler, D. Hopkins, E. Hoyer, K. HalbachLBL, Berkeley, California, USA
R. PalmerBNL, Upton, New York, USA
W. Barletta, R. Jong, L. Reginato, S. YuLLNL, Livermore, California, USA
J. BaylessPulse Sciences Incorporated, Agoura Hills, California, USA
 |  | 
    
        | FR2-01 | KEK Plans for a Linear Collider R&D | klystron, electron, linear-collider, cathode | 691 | 
    
        |  | 
                G. Horikoshi, Y. Kimura, T. NishikawaKEK, Ibaraki, Japan
 |  | 
    
        | FR2-03 | SLAC R&D toward a TeV Linear Collider | SLAC, damping, linac, emittance | 700 | 
    
        |  | 
                P. WilsonSLAC, Menlo Park, California, USA
 |  |