Difference between revisions of "CeC EIC Physics Meeting"
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==Meeting Agenda== | ==Meeting Agenda== | ||
+ | |||
+ | * 04/19/2024: | ||
+ | ** [[media:Update_2024_04_19.pdf|Update on Mathematica code (solenoid field fitting and its impact on beam envelope evolution in cooling section)]], by V.N. Litvinenko; | ||
+ | |||
+ | * 04/12/2024: | ||
+ | ** [[media:Ion_tracking_with_local_wake_8.pdf|Ion tracking results for the latest setup with 50 A but larger slice-to-slice energy deviation (041124, slides 41-47)]], by G. Wang; | ||
+ | |||
+ | * 03/29/2024: | ||
+ | ** [[media:03292024.pdf|SPACE simulation: cooling field for setup 04112024]], by J. Ma; | ||
+ | |||
+ | * 06/30/2023: | ||
+ | ** [[media:06302023.pdf|SPACE simulation: emittance evolution along cooling section with action based cutting and sensitivity study of cooling force (current and emittance)]], by J. Ma; | ||
+ | |||
+ | * 04/07/2023: | ||
+ | ** [[media:Benchmarking_Impact-T_and_SPACE_04072003.pdf|Benchmarking Impact-T and SPACE in the CeC PCA Section (matching core of electron beam)]], by K.Shih; | ||
+ | |||
+ | * 03/31/2023: | ||
+ | ** [[media:Benchmarking_Impact-T_and_SPACE_in_the_CeC_PAC.pdf|Benchmarking Impact-T and SPACE in the CeC PCA Section]], by K.Shih; | ||
+ | |||
+ | * 03/17/2023: | ||
+ | ** [[media:03172023.pdf|SPACE simulation (benchmarking with impact-t to resove discrepancy in emittance growth with space charge)]], by J. Ma; | ||
+ | |||
+ | * 03/10/2023: | ||
+ | ** [[media:Yichao_3_31_2023.pdf|Update on CeC beam simulation]], by Y. Jing; | ||
+ | |||
+ | * 01/27/2023: | ||
+ | ** [[media:01272023.pdf|SPACE simulation (reasons for emittance growth was found and corrected)]], by J. Ma; | ||
+ | |||
+ | * 01/20/2023: | ||
+ | ** [[media:Solenoid_nolinearity.pdf|PCA solenoids nonlinearity]], by V. Litvinenko; | ||
+ | |||
+ | * 01/13/2023: | ||
+ | ** [[media:01132023_2.pdf|Updates on SPACE simulation (Gaussian transverse distribution and unexpected emittance growth)]], by J. Ma; | ||
+ | ** [[media:Emittance_Growth_in_PCA.pdf|Emittance growth in PCA]], by K.Shih; | ||
+ | ** [[media:Fit_145A_solenoid_setting.pdf|Fitting formula for CeC-X solenoids in the cooling section]], by V. Litvinenko; | ||
+ | |||
+ | * 12/16/2022: | ||
+ | ** [[media:12162022.pdf|Dependance of PCA gain on solenoids' current]], by J. Ma; | ||
+ | |||
+ | * 11/18/2022: | ||
+ | ** [[media:11_18_22_Yichao.pdf|Update on CeC beam simulation]], by Y. Jing; | ||
+ | ** [[media:11112022.pdf|Updates on SPACE simulation (with transverse dependance)]], by J. Ma; | ||
+ | ** [[media:Ion_tracking_with_local_wake_3_1.pdf|Updates on ion tracking simulation with new wakes from SPACE simulation (with transverse simulated dependance)]], by G. Wang; | ||
+ | |||
+ | * 10/21/2022: | ||
+ | ** [[media:Sol_offset_scan.pdf|Solenoid misalignment scan]], by K. Shih; | ||
+ | |||
+ | * 10/14/2022: | ||
+ | ** [[media:10142002.pdf|SPACE simulation of CeC X with Run21 e beam with solenoid settings optimizing center slice]], by J. Ma; | ||
+ | ** [[media:Effects_of_Initial_Beam_Distribution.pdf|Beam dynamic simulation for electrons with different initial current profile]], by K.Shih; | ||
+ | |||
+ | * 10/07/2022: | ||
+ | ** [[media:10072002.pdf|SPACE simulation of CeC X with Run21 e beam with different solenoid settings]], by J. Ma; | ||
+ | ** [[media:Ion_tracking_with_local_wake_updates.pdf|Updates on ion tracking simulation with new wakes from SPACE simulation (new solenoid settings)]], by G. Wang; | ||
+ | |||
+ | * 09/30/2022: | ||
+ | ** [[media:Ion_tracking_with_local_wake _2.pdf|Updates on ion tracking code for the CeC experiment(the cooling force now depends on the local properties of the electrons that overlaps with the ion)]], by G. Wang; | ||
+ | ** [[media:9_30_22_1.pdf|Updates on the beam dynamics simulation(new distribution with more uniform beam parameters around core)]], by Y. Jing; | ||
+ | ** [[media:Smearing_of_Wake_due_to_Energy_Deviation.pdf|Estimate of the reduction of the cooling force due to longitudinal slipping of the off-momentum ions for the CeC experimen]], by G. Wang; | ||
+ | |||
+ | * 09/02/2022: | ||
+ | ** [[media:09022022.pdf|SPACE simulation of CeC X with Run21 e beam for 5 slices sitting to the left (head) of the peak]], by J. Ma; | ||
+ | ** [[media:slice_emittance_new_way_3.pdf|Emittance measurement: new way (updates, waiting for the file...)]], by K.Shih; | ||
+ | |||
+ | * 08/19/2022: | ||
+ | ** [[media:08192022.pdf|SPACE simulation of CeC X with Run21 e beam for 3 slices and check sensitivity to charge variation]], by J. Ma; | ||
+ | ** [[media:slice_emittance_new_way_2.pdf|Emittance measurement: new way (updates)]], by K.Shih; | ||
+ | |||
+ | * 08/12/2022: | ||
+ | ** [[media:409_pm10%C_slice_beta.pdf|Simulation of impact due to laser intensity jitter (updates)]], by K.Shih; | ||
+ | ** [[media:updates_on_dual_gaussian_yichao.pdf|Simulation results with electron bunch formed by combining two Guassian laser pulses]], by Y. Jing; | ||
+ | |||
+ | * 08/05/2022: | ||
+ | ** [[media:08052022.pdf|SPACE simulation of CeC X with increased solenoids current and check superposition (100 ions)]], by J. Ma; | ||
+ | ** [[media:cylinder.pdf|Analysis of solenoid measurement]], by I. Pinayev; | ||
+ | ** [[media:409_pm10%C.pdf|Simulation of impact due to laser intensity jitter]], by K.Shih; | ||
+ | ** [[media:slice_emittance_new_way_1.pdf|Emittance measurement: new way (updates)]], by K.Shih; | ||
+ | |||
+ | * 07/29/2022: | ||
+ | ** [[media:Track.pdf|Tracking for PCA Solenoids]], by I. Pinayev; | ||
+ | ** [[media:slice_emittance_new_way.pdf|Slice Emittance Measurement: new way]], by K.Shih; | ||
+ | ** [[media:Impact-T_Simulation_in_Misaligned_CeC_Beamline.pdf|Impact-T Simulation in Misaligned CeC Beamline]], by K.Shih; | ||
+ | |||
+ | * 07/22/2022: | ||
+ | ** [[media:07222022.pdf|Dependance of cooling force on the current of solenoid 3-5]], by J. Ma; | ||
+ | ** [[media:Gauss_flattop_comparison.pdf|Laser profile-Gaussian vs flattop]], by Y. Jing; | ||
+ | ** [[media:PCA_solenoids.pdf|Analysis of Magnetic Measurements Data of PCA Solenoids On axis]], by I. Pinayev; | ||
+ | ** [[media:Kicker.pdf|Kicker for Buncher transverse Kick Compensation]], by V. Litvinenko; | ||
+ | ** [[media:EM_Fields_BeamAxis.pdf|Electric and magnetic fields along the beam axis of NSLS-II kicker]], by M. Sangroula; | ||
+ | |||
+ | * 07/08/2022: | ||
+ | ** [[media:Cathode_system.pdf|Cathode and SRF gun axis]], by V. Litvinenko; | ||
+ | ** [[media:Optimized_Crosssection_CeC_Kicker.pdf|Optimization of the CeC Kicker’s cross section]], by M. Sangroula; | ||
+ | |||
+ | * 05/20/2022: | ||
+ | ** [[media:Yichao_5_20_2022.pdf|Requirements for CeC systems]], by Y. Jing; | ||
+ | ** [[media:Tolerance_on_the_Bunch_by_Bunch_Energy_Jitter.pdf|Tolerance on the Bunch-by-Bunch Energy Jitter for the CeC Experiment]], by G. Wang; | ||
+ | |||
+ | * 05/18/2022: | ||
+ | ** [[media:05202022 (002).pdf|CeC Physics]], by J. Ma; | ||
+ | |||
+ | * 03/18/2022: | ||
+ | ** [[media:2022_March_18_signal_suppression_Will.pdf|More Realistic Signal Suppression and Detection]], by W. Bergan; | ||
+ | |||
+ | * 02/04/2022: | ||
+ | ** [[media:3D_effects.pdf|Some 3D effects in MBEC]], by G. Stupakov; | ||
+ | ** [[media:02042022.pdf|Updates on 3D simulations for the CeC experiment]], by J. Ma; | ||
+ | |||
+ | * 01/21/2022: | ||
+ | ** [[media:Slice_Emittance_Measurement.pdf|Slice Emittance Measurement on CeC Diagnostic Beamline]], by K. Shih; | ||
+ | |||
+ | * 11/12/2021: | ||
+ | ** [[media:LEReC_recombination_studies.pdf|APEX on Recombination studies at LEReC]], by D. Kayran; | ||
+ | ** [[media:11052021.pdf|Updates on 3D simulations for the CeC experiment]], by J. Ma; | ||
+ | |||
+ | * 10/29/2021: | ||
+ | ** [[media:comparison.pdf|CSR and space charge impedance in MBEC for EIC]], by G. Stupakov; | ||
+ | ** [[media:talk_2B_Panos.pdf|1D vs 3D model for microbunched electron cooling]], by P. Baxevanis; | ||
+ | |||
+ | * 10/15/2021: | ||
+ | ** [[media:3D_PCA_CeC_VLpptx.pdf|3D cooling with PCA μ bunching CeC]], by V. Litvinenko; | ||
+ | ** [[media:Progress update_101521.pdf|Progress on EIC Strong Hadron Cooling]], by E. Wang; | ||
+ | |||
+ | * 10/01/2021: | ||
+ | ** [[media:09312021.pdf|Updates on SPACE simulation of CeC experiment (50A, various waist)]], by J. Ma; | ||
+ | ** [[media:Benchmarking Impact-T and Parmela_1.pdf|Benchmarking Impact-T and Parmela for CeC buncher voltage (updated)]], by K. Shih; | ||
+ | |||
+ | * 09/17/2021: | ||
+ | ** [[media:09132021.pdf|Updates on SPACE simulation of CeC experiment (50A)]], by J. Ma; | ||
+ | ** [[media:Benchmarking_Impact-T_and_Parmela.pdf|Benchmarking Impact-T and Parmela for CeC buncher voltage]], by K. Shih; | ||
+ | |||
+ | * 08/27/2021: | ||
+ | ** [[media:Dependance_of_recombination_rate_on energy_deviation.pdf|Dependance of recombination rate on energy deviation of electrons]], by G. Wang; | ||
+ | |||
+ | * 08/20/2021: | ||
+ | ** [[media:Parameters_for_CeC_PoP_experiment_revised.pdf|Simulation of traditional electron cooling for CeC experiment]], by H. Zhao; | ||
+ | ** [[media:Puzzle_of_the_large_recombination_peak_widths_rev_1.pdf|The puzzle of the large recombination peak widths measured during the CeC run]], by P. Thieberger; | ||
+ | ** [[media:Center_of_the_beam_nergy_jitter_and_time_jitter.pdf|Simple model for the energy change for central slice]], by V. Litvinenko; | ||
+ | ** [[media:filamentation_study.pdf|Laser Imprint Study with Impact-T]], by K. Shih; | ||
+ | |||
+ | * 08/13/2021: | ||
+ | ** [[media:2021-08-13_CEC_RegularCoolingEstimate.pdf|eCooling time estimate for CeC experiment]], by D. Kayran; | ||
+ | ** [[media:08132021.pdf|Sensitivity studies of PCA gain to e beam parameters]], by J. Ma; | ||
+ | |||
+ | * 08/06/2021: | ||
+ | ** [[media:Cooling_Rate_Analysis.pdf|Cooling rate analysis (data analysis for run 21 CeC experiment)]], by K. Shih; | ||
+ | ** [[media:influence_of_energy_jitter_updated_1.pdf|Influence of energy jitter (jitter with Gaussian distribution)]], by G. Wang; | ||
+ | |||
+ | * 07/30/2021: | ||
+ | ** [[media:longMisalign.pdf|Electron-ion longitudinal misalignment in CeC scheme]], by S. Seletskiy; | ||
+ | ** [[media:influence_of_energy_jitter_updated.pdf|Influence of energy jitter (tracking with wake from 3D simulation)]], by G. Wang; | ||
+ | |||
+ | * 07/23/2021: | ||
+ | ** [[media:Effect of energy jitter.pdf|Effect of energy jitter (analytical)]], by V. Litvinenko; | ||
+ | ** [[media:influence_of_energy_jitter.pdf|Influence of energy jitter (macro-particle tracking)]], by G. Wang; | ||
+ | ** [[media:07232021.pdf|Simulation of type 2 PCA for EIC (investigating emittance growth)]], by J. Ma; | ||
+ | |||
+ | |||
+ | * 07/16/2021: | ||
+ | ** [[media:CSR in CeC_updated.pdf|Reflections on the bend-based CeC designs (with updates)]], by Y. Derbenev; | ||
+ | ** [[media:07162021_jun.pdf|Simulation of type 2 PCA for EIC: single cell gain in FFT components]], by J. Ma; | ||
+ | ** [[media:microbunching.pdf|Study of microbunching instability in an EIC MBEC cooling system]], by G. Stupakov; | ||
+ | |||
+ | * 07/02/2021: | ||
+ | ** [[media:Cooling_decrement_with_painting.pdf|Cooling decrement with painting]], by V. Litvinenko; | ||
+ | ** [[media:07022021_Jun.pdf|Simulation of beam size dependence on common section solenoid with SPACE for PoP experiment]], by J. Ma; | ||
+ | ** [[media:06252021_Jun.pdf|Simulation of type 2 PCA for EIC: influence of solenoid radius to emittance]], by J. Ma; | ||
+ | |||
+ | * 06/25/2021: | ||
+ | ** [[media:Updates of 1-D PCA model_v2.pdf|Updates of 1-D PCA model]], by G. Wang; | ||
+ | ** [[media:PCA_for_EIC.pdf|PCA amplifier and PCA with wigglers]], by G. Stupakov; | ||
+ | ** [[media:CSR in CeC.pdf|Reflections on the bend-based CeC designs]], by Y. Derbenev; | ||
+ | |||
* 06/11/2021: | * 06/11/2021: | ||
** [[media:CeC_X_061121.pptx|Coherent electron cooling experiment at RHIC]], by V. Litvinenko; | ** [[media:CeC_X_061121.pptx|Coherent electron cooling experiment at RHIC]], by V. Litvinenko; | ||
Line 9: | Line 182: | ||
* 06/04/2021: | * 06/04/2021: | ||
** [[media:2021_June_4_bergan.pdf|MBEC/PCA Cooling time comparison]], by W. Bergan; | ** [[media:2021_June_4_bergan.pdf|MBEC/PCA Cooling time comparison]], by W. Bergan; | ||
+ | ** [[media:Comments_on_Stupakov's_presenation_on_May_14,_2021.pdf|Comments on May 14 presentation by Stupakov]], by V. Litvinenko | ||
+ | |||
* 05/14/2021: | * 05/14/2021: |
Latest revision as of 19:48, 19 April 2024
Meeting Goals
The CeC EIC meeting is the place where the CeC experiment, physics and design issue of the CeC-based EIC cooling effort are discussed.
Meeting Agenda
- 04/19/2024:
- 04/12/2024:
- 03/29/2024:
- 06/30/2023:
- 04/07/2023:
- 03/31/2023:
- 03/17/2023:
- 03/10/2023:
- Update on CeC beam simulation, by Y. Jing;
- 01/27/2023:
- 01/20/2023:
- PCA solenoids nonlinearity, by V. Litvinenko;
- 01/13/2023:
- Updates on SPACE simulation (Gaussian transverse distribution and unexpected emittance growth), by J. Ma;
- Emittance growth in PCA, by K.Shih;
- Fitting formula for CeC-X solenoids in the cooling section, by V. Litvinenko;
- 12/16/2022:
- Dependance of PCA gain on solenoids' current, by J. Ma;
- 11/18/2022:
- 10/21/2022:
- Solenoid misalignment scan, by K. Shih;
- 10/14/2022:
- 10/07/2022:
- 09/30/2022:
- Updates on ion tracking code for the CeC experiment(the cooling force now depends on the local properties of the electrons that overlaps with the ion), by G. Wang;
- Updates on the beam dynamics simulation(new distribution with more uniform beam parameters around core), by Y. Jing;
- Estimate of the reduction of the cooling force due to longitudinal slipping of the off-momentum ions for the CeC experimen, by G. Wang;
- 09/02/2022:
- 08/19/2022:
- 08/12/2022:
- 08/05/2022:
- SPACE simulation of CeC X with increased solenoids current and check superposition (100 ions), by J. Ma;
- Analysis of solenoid measurement, by I. Pinayev;
- Simulation of impact due to laser intensity jitter, by K.Shih;
- Emittance measurement: new way (updates), by K.Shih;
- 07/29/2022:
- Tracking for PCA Solenoids, by I. Pinayev;
- Slice Emittance Measurement: new way, by K.Shih;
- Impact-T Simulation in Misaligned CeC Beamline, by K.Shih;
- 07/22/2022:
- Dependance of cooling force on the current of solenoid 3-5, by J. Ma;
- Laser profile-Gaussian vs flattop, by Y. Jing;
- Analysis of Magnetic Measurements Data of PCA Solenoids On axis, by I. Pinayev;
- Kicker for Buncher transverse Kick Compensation, by V. Litvinenko;
- Electric and magnetic fields along the beam axis of NSLS-II kicker, by M. Sangroula;
- 07/08/2022:
- Cathode and SRF gun axis, by V. Litvinenko;
- Optimization of the CeC Kicker’s cross section, by M. Sangroula;
- 05/20/2022:
- Requirements for CeC systems, by Y. Jing;
- Tolerance on the Bunch-by-Bunch Energy Jitter for the CeC Experiment, by G. Wang;
- 05/18/2022:
- CeC Physics, by J. Ma;
- 03/18/2022:
- More Realistic Signal Suppression and Detection, by W. Bergan;
- 02/04/2022:
- Some 3D effects in MBEC, by G. Stupakov;
- Updates on 3D simulations for the CeC experiment, by J. Ma;
- 01/21/2022:
- 11/12/2021:
- APEX on Recombination studies at LEReC, by D. Kayran;
- Updates on 3D simulations for the CeC experiment, by J. Ma;
- 10/29/2021:
- CSR and space charge impedance in MBEC for EIC, by G. Stupakov;
- 1D vs 3D model for microbunched electron cooling, by P. Baxevanis;
- 10/15/2021:
- 3D cooling with PCA μ bunching CeC, by V. Litvinenko;
- Progress on EIC Strong Hadron Cooling, by E. Wang;
- 10/01/2021:
- 09/17/2021:
- 08/27/2021:
- 08/20/2021:
- Simulation of traditional electron cooling for CeC experiment, by H. Zhao;
- The puzzle of the large recombination peak widths measured during the CeC run, by P. Thieberger;
- Simple model for the energy change for central slice, by V. Litvinenko;
- Laser Imprint Study with Impact-T, by K. Shih;
- 08/13/2021:
- eCooling time estimate for CeC experiment, by D. Kayran;
- Sensitivity studies of PCA gain to e beam parameters, by J. Ma;
- 08/06/2021:
- 07/30/2021:
- Electron-ion longitudinal misalignment in CeC scheme, by S. Seletskiy;
- Influence of energy jitter (tracking with wake from 3D simulation), by G. Wang;
- 07/23/2021:
- Effect of energy jitter (analytical), by V. Litvinenko;
- Influence of energy jitter (macro-particle tracking), by G. Wang;
- Simulation of type 2 PCA for EIC (investigating emittance growth), by J. Ma;
- 07/16/2021:
- Reflections on the bend-based CeC designs (with updates), by Y. Derbenev;
- Simulation of type 2 PCA for EIC: single cell gain in FFT components, by J. Ma;
- Study of microbunching instability in an EIC MBEC cooling system, by G. Stupakov;
- 07/02/2021:
- 06/25/2021:
- Updates of 1-D PCA model, by G. Wang;
- PCA amplifier and PCA with wigglers, by G. Stupakov;
- Reflections on the bend-based CeC designs, by Y. Derbenev;
- 06/11/2021:
- Coherent electron cooling experiment at RHIC, by V. Litvinenko;
- EIC SHC design profress, by E. Wang;
- 06/04/2021:
- MBEC/PCA Cooling time comparison, by W. Bergan;
- Comments on May 14 presentation by Stupakov, by V. Litvinenko
- 05/14/2021:
- Comparison of PCA and MBEC for EIC, by G. Stupakov;
- 05/07/2021:
- CeC for EIC, by V. Litvinenko;
- Preliminary Estimates for Cooling EIC with PCA Based CeC, by G. Wang;
- CeC Physics (type I PCA simulation for EIC), by J. Ma;
- 04/30/2021:
- EIC Strong Hadron Cooling, by E. Wang;
- 04/16/2021:
- EIC Beam Parameters, by M. Blaskiewicz;
- 04/09/2021:
- Updates on CeC Physics Meeting, by G. Wang;