Simulations for LEP3/TLEP Marco Zanetti (MIT) 1 Introduction - - PowerPoint PPT Presentation

simulations for lep3 tlep
SMART_READER_LITE
LIVE PREVIEW

Simulations for LEP3/TLEP Marco Zanetti (MIT) 1 Introduction - - PowerPoint PPT Presentation

Simulations for LEP3/TLEP Marco Zanetti (MIT) 1 Introduction Beams are squeezed at the IP to push for high luminosity. Similar to ILC but in this case beams cannot be disrupted after the collision. Beamstrahlung effects must be mild


slide-1
SLIDE 1

1

Simulations for LEP3/TLEP

Marco Zanetti (MIT)

slide-2
SLIDE 2
  • Beams are squeezed at the IP to push for high luminosity.
  • Similar to ILC but in this case beams cannot be disrupted after

the collision.

  • Beamstrahlung effects must be mild enough to allow a

reasonable lifetime

– At least larger than burn-out lifetime

  • Additional key ingredient is the enhanced momentum

acceptance

– we aim at 4% (by increasing RF voltage)

  • LEP3/TLEP parameters already chosen accordingly to

analytical formulation and full beam-beam simulation

– V. Telnov, http://arxiv.org/abs/1203.6563, based on analytic formulation of the problem – MZ at 1st LEP3 workshop, http://tinyurl.com/8lzdad2

Introduction

2

slide-3
SLIDE 3
  • Analytic functional form (red in the plot):
  • Constants not checked yet

Simulation – Analytic form

3

slide-4
SLIDE 4
  • BS lifetime results (TLEP)
  • Luminosity profile
  • Power dissipation
  • Multi-turn simulation

Outlook

4

slide-5
SLIDE 5

Lifetime>4h h=3%

  • Single crossing guinea-pig based simulation

– Simulate 360M macroparticles around the working point

  • Lifetime features exponential dependency on energy

acceptance

Energy spectrum

5

TLEP-T TLEP-H

  • As for LEP3, TLEP BS lifetime well above required threshold
  • In particular some margin (x2 ?) is there for TLEP-H
slide-6
SLIDE 6
  • Look at the how much luminosity is delivered within 1% of

nominal √s (L0.01)

– Key quantities for Physics – ISR not included, single crossing simulation

  • Beamstrahlung effects much smaller than at ILC
  • Almost monochromatic luminosity profile

– Very similar performances for all circular collider options

  • To be confirmed by multi-turn simulation

Luminosity profile

6

slide-7
SLIDE 7
  • The photon flux could be problematic for machine and

detector instrumentation

  • Run the simulation to estimate the photon rate and energy
  • Use that to compute how much power is dissipated as a

function of the polar angle

Power dissipation

7

LEP3

slide-8
SLIDE 8
  • Similar dissipation for LEP3 and TLEP (O(10) kW integrated)
  • Should be manageable, most of the power dissipated at very

small angle

– No harm to experiments – Beam pipe needs protection – Flux on quadrupoles rather limited

Power dissipation

8

TLEP

slide-9
SLIDE 9
  • Goal is to check the beam parameters at equilibrium

– Assume TLEP-H parameters

  • Integrate beam-beam simulation with simple longitudinal and

transverse dynamics

  • Transverse motion:

– Qx,Qy>0.5

  • Synchrotron motion:
  • Radiation damping:

Multi-turn simulation

9

slide-10
SLIDE 10

H plane: effect of collision

10

  • A correlation is introduced

– Linear in the bulk, non-linear in the tails

  • Correct it by means of a rotation matrix (quad):

– a determined empirically from the fit of the bulk

slide-11
SLIDE 11

H plane: effect of correlation

11

Colliding once and then transporting the beams around w/o further collision (divergent otherwise)

slide-12
SLIDE 12

H plane: compensating correlation

12

  • Collide only once, then transport
  • Correct right after the collision
  • Rotation of the tails not fully corrected
slide-13
SLIDE 13

H plane: full simulation

13

  • Collide at every turn in 1 IP
  • Still some beating
slide-14
SLIDE 14
  • Small correlation also here
  • No compensation applied, still beam is not diverging

V plan: full simulation

14

slide-15
SLIDE 15
  • Strong damping
  • Not totally clear to me..

Z plane: full simulation

15

slide-16
SLIDE 16
  • Analytic computation verified by simulation

– Very short lifetime for original beam parameters – Negligible effect on energy spread – Number of gammas <1 (0.6)

  • First implementation of multi-pass simulation is encouraging

– Need to cope with large a in the H plane

  • Long to do list:

– Understand/debug features – Compute relevant quantities at equilibrium – Implement 4 IPs – ..

Summary

16

slide-17
SLIDE 17

17

slide-18
SLIDE 18

18