Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the...

16
Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the Electron-cloud Modelling Algorithm ECLOUD Jim Crittenden Cornell Laboratory for Accelerator-Based Sciences and Education Electron Cloud Simulations Meeting Wilson Lab 14 January 2009
  • date post

    30-Jan-2016
  • Category

    Documents

  • view

    219
  • download

    0

Transcript of Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the...

Page 1: Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the Electron-cloud Modelling Algorithm ECLOUD Jim Crittenden Cornell.

Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations

using the Electron-cloud Modelling Algorithm ECLOUD

Jim Crittenden

Cornell Laboratory for Accelerator-Based Sciences and Education

Electron Cloud Simulations Meeting

Wilson Lab

14 January 2009

Page 2: Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the Electron-cloud Modelling Algorithm ECLOUD Jim Crittenden Cornell.

214 January 2009

Overview of Modelling Parameters and Data Sets

ECLOUD Electric Field Calculations/ J.A.Crittenden

CesrTA Electron Cloud Simulation wiki page: Simulation Guidance Parameters TS0407CESR measurements in CESR-c configuration in April, 20071.89 GeV - Ten 0.75 mA bunches, followed by ten empty bunches, 14 ns spacingBeam RMS size 0.16 x 0.016 x 12.6 mm. ECLOUD bunch time +- 3.4 sigma: 0.29 nsElliptical beam pipe 4.5 x 2.5 cmQE 10%, 0.23 s.r. photons per beam particle (mistake: should have been 0.53 for dipole)25k macroparticles generated per filled bunchSEY parameters: SEY=1.8, Epk = 310 eV150 steps per bunch length, 300 steps between bunches11 field calculations during each of 20 bunchesTransverse field grid 7x7 spanning +- 3 sigmaField calculation includes beampipe image charges, no contribution from beamFour data sets: e+ & e-(+- 5mm/grid sources), e+(+-0.5mm/grid sources),e+(+-5mm/cloud sources )Ten runs per data set: zero beam offset, +- X and Y beam offsets, each for both drift and 715 G dipole volumes

Page 3: Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the Electron-cloud Modelling Algorithm ECLOUD Jim Crittenden Cornell.

314 January 2009

e+, Drift volume, Beam Y + 5 mm

ECLOUD Electric Field Calculations/ J.A.Crittenden

Beam offset observed in cloud particle energies

Page 4: Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the Electron-cloud Modelling Algorithm ECLOUD Jim Crittenden Cornell.

414 January 2009

e+, Vertical Field, Drift, Beam Y +- 5 mm

ECLOUD Electric Field Calculations/ J.A.Crittenden

No pinch effect present

Page 5: Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the Electron-cloud Modelling Algorithm ECLOUD Jim Crittenden Cornell.

514 January 2009

e+, Vertical Field, Drift, Beam Y +- 5 mm

ECLOUD Electric Field Calculations/ J.A.Crittenden

Marco found a gradient about 25% larger for this case

Page 6: Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the Electron-cloud Modelling Algorithm ECLOUD Jim Crittenden Cornell.

614 January 2009

e+, Vertical Field, Drift, Beam Y +- 5 mm

ECLOUD Electric Field Calculations/ J.A.Crittenden

Grid Field Sources (21x21)

Macroparticle Field Sources

Page 7: Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the Electron-cloud Modelling Algorithm ECLOUD Jim Crittenden Cornell.

714 January 2009

e+, Horizontal Field, Drift, Beam X +- 5 mm

ECLOUD Electric Field Calculations/ J.A.Crittenden

Some pinch effect present

Page 8: Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the Electron-cloud Modelling Algorithm ECLOUD Jim Crittenden Cornell.

814 January 2009

e+, Horizontal Field, Drift, Beam X +- 5 mm

ECLOUD Electric Field Calculations/ J.A.Crittenden

Gradient factor 3 smaller than vertical

Page 9: Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the Electron-cloud Modelling Algorithm ECLOUD Jim Crittenden Cornell.

914 January 2009

e+, Vertical Field, Drift, Beam Y +- 0.5 mm

ECLOUD Electric Field Calculations/ J.A.Crittenden

Some “pinch effect” present

Page 10: Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the Electron-cloud Modelling Algorithm ECLOUD Jim Crittenden Cornell.

1014 January 2009

e+, Vertical Field, Drift, Beam Y +- 0.5 mm

ECLOUD Electric Field Calculations/ J.A.Crittenden

Gradient factor 6 larger than for offset +- 5mm (?)

Page 11: Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the Electron-cloud Modelling Algorithm ECLOUD Jim Crittenden Cornell.

1114 January 2009

e+, Horizontal Field, Drift, Beam X +- 0.5 mm

ECLOUD Electric Field Calculations/ J.A.Crittenden

Some “pinch effect” present

Page 12: Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the Electron-cloud Modelling Algorithm ECLOUD Jim Crittenden Cornell.

1214 January 2009

e+, Horizontal Field, Drift, Beam X +- 0.5 mm

ECLOUD Electric Field Calculations/ J.A.Crittenden

Gradient again factor 6 larger than for offset +- 5mm (?)

Page 13: Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the Electron-cloud Modelling Algorithm ECLOUD Jim Crittenden Cornell.

1314 January 2009

e-, Vertical Field, Drift, Beam Y +- 5 mm

ECLOUD Electric Field Calculations/ J.A.Crittenden

No pinch effect present

Page 14: Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the Electron-cloud Modelling Algorithm ECLOUD Jim Crittenden Cornell.

1414 January 2009

e-, Vertical Field, Drift, Beam Y +- 5 mm

ECLOUD Electric Field Calculations/ J.A.Crittenden

Marco found a gradient about 25% larger for this case

Page 15: Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the Electron-cloud Modelling Algorithm ECLOUD Jim Crittenden Cornell.

1514 January 2009

e-, Horizontal Field, Drift, Beam X +- 5 mm

ECLOUD Electric Field Calculations/ J.A.Crittenden

Some pinch effect present

Page 16: Space Charge Electric-Field Calculations for Coherent Tune Shift Estimations using the Electron-cloud Modelling Algorithm ECLOUD Jim Crittenden Cornell.

1614 January 2009

e-, Horizontal Field, Drift, Beam X +- 5 mm

ECLOUD Electric Field Calculations/ J.A.Crittenden