| Paper | Title | Other Keywords | Page | 
    
        | MO3-04 | Nonlinear Beam Dynamics in a Funnel for Combining Two Intense Ion Beams | emittance, ion, plasma, controls | 38 | 
    
        |  | 
                J. Whealton, R. Raridon, K. Rothe, T. OwensORNL, Oak Ridge, Tennessee, USA
W. BecraftGrumman Space Systems, Oak Ridge, Tennessee, USA
 |  | 
    
        | MO3-10 | RFQ Acceleration Section and Its Optimization | rfq, acceleration, DTL, focusing | 61 | 
    
        |  | 
                D. RapariaUniversity of Houston & Texas Accelerator Center, Texas, USA
 |  | 
    
        | MO3-22 | A Simple Model of Ion Extraction from a Plasma Source | ion, extraction, plasma, ion-source | 97 | 
    
        |  | 
                T. TaylorAtomic Energy of Canada, Chalk River, Ontario, Canada
 |  | 
    
        | MO3-27 | Low Beta Linacs and Alternating Phase Focusing | linac, drift-tube-linac, simulation, rfq | 112 | 
    
        |  | 
                R. Gluckstern, D. VassiliadisUniversity of Maryland, College Park, Maryland, USA
 |  | 
    
        | MO3-51 | Beam Transport with Magnetic Solenoids and Plasma Lenses | emittance, plasma, ion, rfq | 173 | 
    
        |  | 
                R. NobleFermilab, Batavia, Illinois, USA
 |  | 
    
        | MO3-55 | A Low Beta RF Linac-Structure of the IH-Type with Improved Radial Acceptance | cavity, ion, quadrupole, acceleration | 185 | 
    
        |  | 
                U. RatzingerGSI, Darmstadt, Germany
 |  | 
    
        | MO3-58 | Uniform Ribbon-Beam Generation for Accelerator Production of Tritium | octupole, emittance, linac, neutron | 192 | 
    
        |  | 
                A. Jason, B. BlindLANL, Los Alamos, New Mexico, USA
E. SvatonRockwell International, Canoga Park, California, USA
 |  | 
    
        | TU1-01 | High-Order Beam Optics (An Overview) | optics, beam-transport, SLAC, LANL | 205 | 
    
        |  | 
                E. HeighwayLANL, Los Alamos, New Mexico, USA
 |  | 
    
        | WE3-08 | RF and Space-Charge Induced Emittances in Laser-Driven RF Guns | emittance, simulation, electron, cavity | 322 | 
    
        |  | 
                K.-J. KimLBL, Berkeley, California, USA
Y.-J. ChenLLNL, Livermore, California, USA
 |  | 
    
        | WE3-15 | High-Brightness, High-Current-Density Cathode for Induction Linac FELs | cathode, brightness, vacuum, electron | 341 | 
    
        |  | 
                W. Turner, Y.-J. Chen, W. NexsenLLNL, Livermore, California, USA
M. Green, G. Miram, A. NordquistVarian Associates, Palo Alto, California, USA
 |  | 
    
        | WE3-23 | Photoelectric Injector Design Considerations | emittance, cavity, cathode, focusing | 365 | 
    
        |  | 
                B. Carlsten, R. SheffieldLANL, Los Alamos, New Mexico, USA
 |  | 
    
        | WE3-36 | Injector for LISA | linac, gun, emittance, electron | 400 | 
    
        |  | 
                A. Aragona, C. Biscari, R. Boni, S. Kulinski, B. Spataro, F. Tazzioli, M. VescoviINFN/LNF, Frascati, Italy
 |  | 
    
        | TH3-25 | Transient Analysis of Multicavity Klystrons | cavity, klystron, impedance, SLAC | 589 | 
    
        |  | 
                T. Lavine, R. Miller, P. Morton, R. RuthSLAC, Menlo Park, California, USA
 |  |