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| WEPE001R.Versteegen (Commissariat à l'Energie Atomique Direction des Sciences de la Matière IRFU) Optics Studies for the Interaction Region of the International Linear Collider |
WEPE003J.W.Amann (SLAC National Accelerator Laboratory) Design of an 18 MW Beam Dump for 500 GeV Electron/Positron Beams at an ILC |
WEPE004F.Furuta (High Energy Accelerator Research Organization) High Gradient Behaviors of Large Grain ICHIRO Single Cell Cavity by Chemical Polishing |
WEPE005F.Furuta (High Energy Accelerator Research Organization) High Field Q-slope Problem in End Group Cavities |
WEPE006F.Furuta (High Energy Accelerator Research Organization) Vacuum Evacuation Effect on ICHIRO 9-cell Cavities during Vertical Test |
WEPE007K.Kubo (High Energy Accelerator Research Organization) Simulation Study of Scale Error Effect of BPM in ILC Main Linac Corrections |
WEPE008N.Ohuchi (High Energy Accelerator Research Organization) Construction of the S1-Global Cryomodules for ILC |
WEPE009K.Saito (High Energy Accelerator Research Organization) Application of MO Sealing for SRF Cavities |
WEPE010K.Saito (High Energy Accelerator Research Organization) Improvements of Cleaning Methods for High Q-slope Problem in Full End Single Cell Cavity |
WEPE011K.Saito (High Energy Accelerator Research Organization) Large Grain 9-cell Cavities R&D at KEK |
WEPE012Y.Yamamoto (High Energy Accelerator Research Organization) Summary of Vertical Tests for S1-Global Project in KEK-STF |
WEPE013Y.Yamamoto (High Energy Accelerator Research Organization) Summary of Results and Development of Online Monitor for T-mapping/X-ray-mapping in KEK-STF |
WEPE014T.Konomi (Sokendai, the Graduate University for Advanced Studies Department of Accelerator Science) Design and Model Cavity Test of the Demountable Damped Cavity |
WEPE015K.Sennyu (Mitsubishi Heavy Industries, Ltd Machinery & Steel Structures Headquarters) Status of the Superconducting Cavity Development for ILC at MHI |
WEPE016T.Nakanishi (Nagoya University) A 200 keV Polarized Electron Gun System for International Linear Collider |
WEPE017Y.Iwashita (Kyoto University Institute for Chemical Research Advanced Research Center for Beam Science) Beam Test Plan of Permanent Magnet Quadrupole Lens at ATF2 |
WEPE018G.Shirkov (Joint Institute for Nuclear Research) ILC Siting in Dubna Region (Russia) and ILC Related Activity at JINR |
WEPE019E.Gschwendtner (European Organization for Nuclear Research AB Department) The CLIC Post-Collision Line |
WEPE020E.Gschwendtner (European Organization for Nuclear Research AB Department) Background in the Interaction Point from the Post-Collision Line |
WEPE021P.Lebrun (European Organization for Nuclear Research AT Department) Assessing Risk in Costing High-energy Accelerators: from Existing Projects to the Future Linear Collider |
WEPE022D.Schulte (European Organization for Nuclear Research AB Department) CLIC Energy Scans |
WEPE023J.Snuverink (European Organization for Nuclear Research) Impact of Dynamic Magnetic Fields on the CLIC Main Beam |
WEPE024G.Rumolo (European Organization for Nuclear Research Beams Department (BE)) Vacuum Specifications for the CLIC Main Linac |
WEPE025B.Dalena (European Organization for Nuclear Research Beams Department (BE)) Beam-beam Background in CLIC in Presence of Imperfections |
WEPE026I.Syratchev (European Organization for Nuclear Research Beams Department (BE)) A New High-power RF Device to Vary the Output Power of CLIC Power Extraction and Transfer Structures (PETS) |
WEPE027P.K.Skowronski (European Organization for Nuclear Research AB Department) Progress towards the CLIC Feasibility Demonstration in CTF3 |
WEPE028R.Tomas (European Organization for Nuclear Research Beams Department (BE)) CLIC BDS Tuning, Alignment and Feedbacks Integrated Simulations |
WEPE029B.Dalena (European Organization for Nuclear Research Beams Department (BE)) Impact of the Experiment Solenoid on the CLIC Luminosity |
WEPE030R.Tomas (European Organization for Nuclear Research Beams Department (BE)) The CLIC BDS Towards the Conceptual Design Report |
WEPE031J.K.Jones (Science and Technology Facilities Council Daresbury Laboratory Accelerator Science and Technology Centre) Beam Delivery System Dogleg Design and Integration for the International Linear Collider |
WEPE032V.F.Khan (Cockcroft Institute The University of Manchester Physics and Astronomy Department) Recent Progress on a Manifold Damped and Detuned Structure for CLIC |
WEPE033W.Gai (Argonne National Laboratory High Energy Physics Division) Considerations for a Dielectric-based Two-beam-accelerator Linear Collider |
WEPE034A.Lunin (Fermi National Accelerator Laboratory) Final Results on RF and Wake Kicks Caused by the Couplers for the ILC Cavity |
WEPE035J.Gronberg (University of California Lawrence Livermore National Laboratory) Development of High Average Power Lasers for the Photon Collider |
WEPE037M.-H.Wang (SLAC National Accelerator Laboratory) Optimization of Dynamic Aperture of PEP-X Baseline Design |
WEPE041B.Parker (Brookhaven National Laboratory Superconducting Magnet Division) A Superconducting Magnet Upgrade of the ATF2 Final Focus |
WEPE042A.Alekou (Imperial College of Science and Technology Department of Physics Blackett Laboratory) Mice Status |
WEPE043A.Sato (Osaka University) Study for a Racetrack FFAG based Muon Ring Cooler |
WEPE044A.Sato (Osaka University) Demonstration of Phase Rotation using Alpha Particles in the Six-sector PRISM-FFAG |
WEPE046A.Sato (Osaka University) G4beamline Simulation for the COMET Solenoid Channel |
WEPE047Y.Bao (Chinese Academy of Sciences Institute of High Energy Physics) Frictional Cooling for a Slow Muon Source |
WEPE048T.V.Zolkin (Russian Academy of Sciences The Budker Institute of Nuclear Physics) Further Study of Muon Ionization Cooling Process |
WEPE050C.T.Rogers (Science and Technology Facilities Council Rutherford Appleton Laboratory Accelerator Science and Technology Centre) Alternative Muon Front End for the International Design Study (IDS) |
WEPE051A.Alekou (Imperial College of Science and Technology Department of Physics Blackett Laboratory) Muon Cooling Performance in Various Neutrino Factory Cooling Cell Configurations using G4MICE |
WEPE052M.Apollonio (Imperial College of Science and Technology Department of Physics Blackett Laboratory) Optimization of the MICE Muon Beamline |
WEPE053M.Apollonio (Imperial College of Science and Technology Department of Physics Blackett Laboratory) Muon Polarimeter in a Neutrino Factory Decay Ring |
WEPE054A.J.Dobbs (Imperial College of Science and Technology Department of Physics Blackett Laboratory) The MICE Muon Beam: Status and Progress |
WEPE055A.Kurup (Imperial College of Science and Technology Department of Physics Blackett Laboratory) The COherent Muon to Electron Transition (COMET) Experiment |
WEPE056J.Pasternak (Imperial College of Science and Technology Department of Physics Blackett Laboratory) Accelerator and Particle Physics Research for the Next Generation Muon to Electron Conversion Experiment - the PRISM Task Force |
WEPE057J.Pasternak (Imperial College of Science and Technology Department of Physics Blackett Laboratory) Injection/Extraction System of the Muon FFAG for the Neutrino Factory |
WEPE060J.K.Pozimski (Imperial College of Science and Technology Department of Physics Blackett Laboratory) Investigation of Beam Loading Effects for the Neutrino Factory Muon Accelerator |
WEPE061M.A.Rayner (Oxford University Physics Department Particle and Nuclear Physics) Measurements of Muon Beam Properties in MICE |
WEPE062P.Hodgson (Sheffield University Physics and Astronomy Department) MICE Target Operation and Monitoring |
WEPE063P.Hodgson (Sheffield University Physics and Astronomy Department) MICE Target Hardware |
WEPE065A.D.Bross (Fermi National Accelerator Laboratory) The US Muon Accelerator Program |
WEPE066M.Chung (Fermi National Accelerator Laboratory) Beam Test of a High Pressure Cavity for a Muon Collider |
WEPE067M.Chung (Fermi National Accelerator Laboratory) Beam-induced Electron Loading Effects in High Pressure Cavities for a Muon Collider |
WEPE068D.V.Neuffer (Fermi National Accelerator Laboratory) MUON CAPTURE IN THE FRONT END OF THE IDS NEUTRINO FACTORY |
WEPE069K.Yonehara (Fermi National Accelerator Laboratory) Study of Electron Swarm In High Pressure Hydrogen Gas Filled RF Cavities |
WEPE070C.M.Ankenbrandt (Muons, Inc) Stopping Muon Beams |
WEPE071M.A.C.Cummings (Muons, Inc) Integrated Low Beta Region Muon Collider Detector Design |
WEPE072S.A.Kahn (Muons, Inc) Incorporating RF into a Muon Helical Cooling Channel |
WEPE073C. Y.Yoshikawa (Muons, Inc) Quasi-isochronous Muon Collection Channels |
WEPE074M.S.Zisman (Lawrence Berkeley National Laboratory) A Possible Hybrid Cooling Channel for a Neutrino Factory |
WEPE075S.S.Kurennoy (Los Alamos National Laboratory) Large-Acceptance Linac for Accelerating Low-Energy Muons |
WEPE076H.M.Miyadera (Los Alamos National Laboratory AOT Division) Simulation of Large Acceptance Muon Linac |
WEPE077F.H.O'Shea (University of California, Los Angeles Physics Department) Permanent Magnet Quadrupole Final Focus System for the Muon Collider |
WEPE078K.T.McDonald (Princeton University) The MERIT High-Power Target Experiment at CERN PS |
WEPE079L.Coney (University of California, Riverside Physics Department) Particle Production in the MICE Beamline |
WEPE080P.Snopok (University of California, Riverside Physics Department) Six-Dimensional Cooling Lattice Studies for the Muon Collider |
WEPE081P.Snopok (University of California, Riverside Physics Department) Wedge Absorber Design for the Muon Ionisation Cooling Experiment |
WEPE084V.S.Morozov (Old Dominion University Department of Physics) Muon Acceleration with RLA and Non-scaling FFAG Arcs |
WEPE085F.Antoniou (National Technical University of Athens) Parameter Scan for the CLIC Damping Rings under the Influence of Intrabeam Scattering |
WEPE086S.Guiducci (Istituto Nazionale di Fisica Nucleare Laboratori Nazionali di Frascati) A Low Emittance Lattice for the International Linear Collider 3 km Damping Ring |
WEPE087T.Abe (High Energy Accelerator Research Organization) RF Accelerating Structure for the Damping Ring of the SuperKEKB Injector |
WEPE088D.Wang (Chinese Academy of Sciences Institute of High Energy Physics) A New Design for ILC 3.2 km Damping Ring Based on FODO Cell |
WEPE089Y.Papaphilippou (European Organization for Nuclear Research) Design Optimisation for the CLIC Damping Rings |
WEPE090A.Vivoli (European Organization for Nuclear Research Beams Department (BE)) Intra-Beam Scattering in the CLIC Damping Rings |
WEPE091M.Böge (Paul Scherrer Institute Swiss Light Source) The Swiss Light Source - a "Test-bed" for Damping Ring Optimization |
WEPE092O.B.Malyshev (Science and Technology Facilities Council Daresbury Laboratory Accelerator Science and Technology Centre) Mechanical and Vacuum Design of The Wiggler Section of The ILC Damping Ring |
WEPE093O.B.Malyshev (Science and Technology Facilities Council Daresbury Laboratory Accelerator Science and Technology Centre) Ion Induced Pressure Instability in the ILC Positron DR |
WEPE094O.B.Malyshev (Science and Technology Facilities Council Daresbury Laboratory Accelerator Science and Technology Centre) SR Power Distribution along Wiggler Section of ILC DR |
WEPE095M.Korostelev (Cockcroft Institute) Impedance and Single-bunch Instabilities in the ILC Damping Ring |
WEPE096M.Korostelev (Cockcroft Institute) DCO4 Lattice Design for 6.4 km ILC Damping Rings |
WEPE097M.T.F.Pivi (SLAC National Accelerator Laboratory Next Linear Collider Dept.) Recommendation for the Feasibility of More Compact LC Damping Rings |
WEPE098S.J.Brooks (Science and Technology Facilities Council Rutherford Appleton Laboratory Accelerator Science and Technology Centre) Optimising Pion Production Target Shapes for the Neutrino Factory |
WEPE099J.-L.Fernandez-Hernando (Science and Technology Facilities Council Daresbury Laboratory Accelerator Science and Technology Centre) Thermal and Mechanical Effects of a CLIC Bunch Train Hitting a Beryllium Collimator |
WEPE100A.Kanareykin (Euclid TechLabs, LLC) Dielectric Collimators for Linear Collider Beam Delivery System |
WEPE101H.G.Kirk (Brookhaven National Laboratory Physics Department) A 4MW Target Station for a Muon Collider or a Neutrino Factory |
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| WEPEC001G.Devanz (Commissariat à l'Energie Atomique Direction des Sciences de la Matière IRFU) Cryogenic Tests of a 704 MHZ 1MW Power Coupler |
WEPEC002W.Kaabi (Laboratoire de l'Accélérateur Linéaire) Titanium Nitride Coating as a Multipactor Suppressor |
WEPEC003L.Lukovac (Laboratoire de l'Accélérateur Linéaire) Industrial Production and Delivery of 670 Fundamental Power Couplers for the XFEL Linac |
WEPEC004O.Kugeler (Helmholtz-Zentrum Berlin für Materialien und Energie GmbH Elektronen-Speicherring BESSY II) CW Adaptation of TESLA Technology in HoBiCaT |
WEPEC005S.Aderhold (Deutsches Elektronen-Synchrotron) Optical Inspection of SRF Cavities at DESY |
WEPEC006L.Hagge (Deutsches Elektronen-Synchrotron) Towards PLM-based Quality Assurance in the Fabrication of the Superconducting Cavities for the European XFEL |
WEPEC007X.Singer (Deutsches Elektronen-Synchrotron) Surface Investigation on Prototype Cavities for the European XFEL |
WEPEC008H.-W.Glock (Rostock University Faculty of Computer Science and Electrical Engineering Institute of General Electrical Engineering) HOM Spectrum and Q-factor Estimations of the High-Beta CERN-SPL-Cavities |
WEPEC009A.Saini (University of Delhi Department of Physics) Designing of 9 Cell Reduced Beta Elliptical Cavity for High Intensity Proton Linac |
WEPEC010A.Saini (University of Delhi Department of Physics) Optimization of End Cells for 11 Cell Beta 0.81 Cavity |
WEPEC011S.Ghatak (Bhabha Atomic Research Centre Accelerator and Pulse Power Division) Multipacting Analysis of Superconducting RF Cavities using a Finite Element-based Code employing Leap Frog Method |
WEPEC012A.S.Dhavale (Bhabha Atomic Research Centre Accelerators and Pulse Power Division Particle Beam Generation and Diagonistics Section) Study of Multipacting in a Coaxial Coupler |
WEPEC013B.K.Sahu (Inter University Accelerator Centre) Phase Locking of Superconducting Quarter Wave Resonator by Piezoelectric Actuator |
WEPEC014L.Monaco (Istituto Nazionale di Fisica Nucleare Laboratorio Acceleratori e Superconduttivita Applicata) Analysis of the Niobium Surface Evolution during BCP and EP Treatments |
WEPEC015T.Furuya (High Energy Accelerator Research Organization) Development of a Prototype Module for the ERL Superconducting Main Linac at KEK |
WEPEC016E.Kako (High Energy Accelerator Research Organization) Preparation Status of Cryomodule Tests of Tesla-like Cavities in S1-Global Project at KEK |
WEPEC018S.Kato (High Energy Accelerator Research Organization Accelerator Laboratory) Application of Electrochemical Buffing onto Niobium SRF Cavity Surface |
WEPEC020Y.Morozumi (High Energy Accelerator Research Organization) Realistic Evaluation of Local Field Enhancement based on Precision Profilometry of Surface Defects |
WEPEC021K.Nakanishi (High Energy Accelerator Research Organization) Measurement of Hydrogen Absorbed in Niobium |
WEPEC022K.Nakanishi (High Energy Accelerator Research Organization) Beam Behavior due to Crab Cavities Break down |
WEPEC023M.Nishiwaki (High Energy Accelerator Research Organization Accelerator Laboratory) Surface Study on Niobium Stain after Electro-polishing for Super-conducting RF Cavity |
WEPEC024S.Noguchi (High Energy Accelerator Research Organization) Present Status of Superconducting Cavity System in cERL Injector Linac at KEK |
WEPEC025T.Saeki (High Energy Accelerator Research Organization) Studies on the Production of Brown Stains in Electro-polishing Process with Nb Sample Plates at KEK |
WEPEC026T.Saeki (High Energy Accelerator Research Organization) Study on the Electro-Polishing of Nb Sample with Artificial Pits |
WEPEC027M.Sawabe. (High Energy Accelerator Research Organization) Long-period Monitoring of Electro-polishing Electrolyte in EP Facility at KEK |
WEPEC028H.Sakai (High Energy Accelerator Research Organization) Cavity Diagnostics using Rotating Mapping System for 1.3GHz ERL 9-Cell Superconducting Cavity |
WEPEC029H.Sakai (High Energy Accelerator Research Organization Accelerator Laboratory) Power Coupler Development for ERL Main LINAC in Japan |
WEPEC030K.Umemori (High Energy Accelerator Research Organization) Results of Vertical Tests for KEK-ERL 9-cell Superconducting Cavity |
WEPEC031K.Umemori (High Energy Accelerator Research Organization) Observation of Resonance Mode in Coaxial-type Input Coupler |
WEPEC032K.Watanabe (High Energy Accelerator Research Organization Accelerator Laboratory) Surface Inspection on MHI-01~09 Cavities |
WEPEC033K.Watanabe (High Energy Accelerator Research Organization Accelerator Laboratory) Repair Techniques of Superconducting Cavity for Improvement Cavity Performance at KEK-STF |
WEPEC034P.V.Tyagi (Sokendai, the Graduate University for Advanced Studies Department of Accelerator Science) Various Rinsing Effects to Mitigate Contaminates Brought by BCP on Niobium SRF Cavity Surface |
WEPEC035H.Tongu (Kyoto University Institute for Chemical Research Advanced Research Center for Beam Science) Multipoint T-map System for Vertical Test of the Superconducting Accelerator Cavities |
WEPEC036J.Yu (Chinese Academy of Sciences Institute of High Energy Physics) A Preliminary Method to Measure Large Grain Nb Sheet Thickness and Grain Direction by Ultrasonic Microscopy |
WEPEC037J.Yu (Chinese Academy of Sciences Institute of High Energy Physics) Pre-design Main Points on Optical-laser Inspection System and Temperature-mapping System for IHEP Low-Loss 9 Cell Cavities |
WEPEC039J.Y.Zhai (Chinese Academy of Sciences Institute of High Energy Physics) IHEP Low-loss Large Grain 9-cell Cavity Fabrication and Processing |
WEPEC041F.S.He (Peking University Institute of Heavy Ion Physics) Manufacturing of the Main Accelerator with TESLA-like 9-cell SRF Cavities at Peking University |
WEPEC042L.Yang (Peking University School of Physics Department of Technical Physics) A POSSIBLE CONCEPT TO IMPROVE THE EFFICIENCY OF THE VERY LOW BETA SC ACCELERATING STRUCTURE |
WEPEC043Z.Y.Yao (Peking University Institute of Heavy Ion Physics) R&D of PKU Single Spoke Cavity |
WEPEC044H.S.Kim (Korea Atomic Energy Research Institute) RF Test of Two-cell Prototype for the PEFP Proton Linac Extension |
WEPEC045S.An (Pohang Accelerator Laboratory) Taper Shape Effects on the HOM Damping of the PLS-II SRF Cavities |
WEPEC046Y.U.Sohn (Pohang Accelerator Laboratory) Design of Superconducting RF System for PLS-II Upgrade |
WEPEC047A.E.Gustafsson (European Organization for Nuclear Research Technology Department (TE)) New Methods for Thin Film Deposition and First Investigations of the use of High Temperature Superconductors for Thin Film Cavities |
WEPEC048A.E.Wheelhouse (Science and Technology Facilities Council Daresbury Laboratory Accelerator Science and Technology Centre) Daresbury International Cryomodule Coupler Progress |
WEPEC049B.D.S.Hall (Cockcroft Institute Lancaster University Engineering Department) Novel Geometries for the LHC Crab Cavity |
WEPEC051A.Zarrebini (Imperial College of Science and Technology Mechanical Engineering) 3D Simulation of the Effects of Surface Defects on Field Emitted Electrons |
WEPEC052I.R.R.Shinton (Cockcroft Institute The University of Manchester Physics and Astronomy Department) Higher Order Modes in Third Harmonic Cavities for XFEL/FLASH |
WEPEC053N.Juntong (Cockcroft Institute The University of Manchester Physics and Astronomy Department) High Gradient Superconducting Cavity with Low Surface EM Fields and Well-suppressed HOMs for The ILC |
WEPEC054F.Stulle (European Organization for Nuclear Research) Status of the CLIC RTML Studies |
WEPEC055S.Molloy (Royal Holloway, University of London Department of Physics) Simulations of Proposed Accelerating Cavities for the CERN SPL |
WEPEC056C.M.Ginsburg (Fermi National Accelerator Laboratory Technical Division) Optimization Studies for Radiation Shielding of a Superconducting RF Cavity Test Facility |
WEPEC057I.G.Gonin (Fermi National Accelerator Laboratory) Single Spoke Cavities for Low-energy Part of CW Linac of Project X. |
WEPEC059N.Solyak (Fermi National Accelerator Laboratory) The Beam Splitter for the Project X |
WEPEC060M.L.Neubauer (Muons, Inc) Beam Pipe HOM Absorber for 750 MHz RF Cavities |
WEPEC061M.L.Neubauer (Muons, Inc) Novel Crab Cavity RF Design |
WEPEC062M.L.Neubauer (Muons, Inc) High Power Coax Window |
WEPEC063V.D.Shemelin (Private Address) Using a Resistive Material for HOM Damping |
WEPEC064Z.A.Conway (Cornell Laboratory for Accelerator-Based Sciences and Education, Cornell University) Localizing SRF-Cavity Quenches with 2nd Sound |
WEPEC065S.E.Posen (Cornell Laboratory for Accelerator-Based Sciences and Education, Cornell University) Coupled Electromagnetic-Thermal-Mechanical Simulations of Superconducting RF Cavities |
WEPEC066M.Liepe (Cornell Laboratory for Accelerator-Based Sciences and Education, Cornell University) Latest Results and Test Plans from the 100 mA Cornell ERL Injector SCRF Cryomodule |
WEPEC067Z.A.Conway (Cornell Laboratory for Accelerator-Based Sciences and Education, Cornell University) CW Microphonic Control in the Cornell ERL Injector Cryomodule |
WEPEC068N.R.A.Valles (Cornell Laboratory for Accelerator-Based Sciences and Education, Cornell University) Cavity Design for Cornell's Energy Recovery Linac |
WEPEC069A.Romanenko (Cornell Laboratory for Accelerator-Based Sciences and Education, Cornell University) Microstructural Investigations of Limiting Factors in Niobium Cavities |
WEPEC073J.Guo (SLAC National Accelerator Laboratory Accelerator Research Division) A Cryogenic RF Material Testing Facility at SLAC |
WEPEC076R.A.Rimmer (Thomas Jefferson National Accelerator Facility) Recent Progress on High-Current SRF Cavities at JLab |
WEPEC077A-M.Valente-Feliciano (Thomas Jefferson National Accelerator Facility) RF and Structural Characterization of SRF Thin Films |
WEPEC078S.Popovic (Old Dominion University Department of Physics) Plasma Treatment of Niobium SRF Cavity Surfaces |
WEPEC079H.Wang (Thomas Jefferson National Accelerator Facility) Design and Prototype Progress toward a Superconducting Crab Cavity Cryomodule for the APS |
WEPEC080A.T.Wu (Thomas Jefferson National Accelerator Facility) PROGRESS OF BEP TREATMENTS ON NB AT JLAB* |
WEPEC081A.T.Wu (Thomas Jefferson National Accelerator Facility) Study of Low Temperature Baking Effect on Field Emission on Nb Samples Treated by BEP, EP, and BCP |
WEPEC082A.Samolov (Old Dominion University Department of Physics) Computational Modeling of Muons passing through Gas Pressured RF Cavities |
WEPEC083M.Nikolić (Old Dominion University Department of Physics) Tomographic Analysis of SRF Cavities as Asymmetric Plasma Reactors |
WEPEC084S.U.De Silva (Old Dominion University Department of Physics) Higher Order Mode Properties of Superconducting Parallel-Bar Cavities |
WEPEC085Q.Wu (Brookhaven National Laboratory) Simulation of the High-Pass Filter for 56 MHz Cavity for RHIC |
WEPEC086Q.Wu (Brookhaven National Laboratory) Optimization of Higher Order Mode Dampers in the 56 MHz SRF Cavity for RHIC |
WEPEC087W.Xu (Brookhaven National Laboratory Collider-Accelerator Department) New Concept and Design of Band-stop HOM Coupler for High Current Superconducting Cavity at BNL |