ilc damping ring wolski (2007) dynamics with transverse coupled-bunch wake fields in the ilc damping...

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ILC Damping Ring Wolski (2007) Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings Kai Hock and Andy Wolski

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Page 1: ILC Damping Ring Wolski (2007) Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings Kai Hock and Andy Wolski

ILC Damping Ring Wolski (2007)

Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings

Kai Hock and Andy Wolski

Page 2: ILC Damping Ring Wolski (2007) Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings Kai Hock and Andy Wolski

Objective: 1. Effect of varying beta function in macroparticle model 2. Analytic solution for constant beta function.

Previous work – for constant beta function :

1. Equation of motion decouple into Fourier modes (Chao 1993).2. Modes decay / grown exponentially, analytic formula available.3. Analytic formula for bunch trajectories available but incomplete (Thompson and Ruth 1991).

Current work:

1. Varying beta function – modes remain coupled, decay modes grow.2. Analytic formula for bunch trajectories completed with error bounds.

Page 3: ILC Damping Ring Wolski (2007) Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings Kai Hock and Andy Wolski

Example of an application

Page 4: ILC Damping Ring Wolski (2007) Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings Kai Hock and Andy Wolski

v

A Macroparticle Modely

No wake field

)(11 tyb n

Resistive wake force

n n+1

n+2

Equation of motion

Sands (1969),Thompson and Ruth (1991), …

History

Page 5: ILC Damping Ring Wolski (2007) Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings Kai Hock and Andy Wolski

Normal Modes

)(~)(~)(~2

1

2

2

2

ntyebtytydt

d M

ni

nn

1

0

2

)()(~M

m

M

mi

m etyty

where

coupled

decoupled

(Fourier modes)

DFT

Chao (1993)

Page 6: ILC Damping Ring Wolski (2007) Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings Kai Hock and Andy Wolski

If beta function is constant

OCS6 Damping Ring: Uniform Fill

Page 7: ILC Damping Ring Wolski (2007) Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings Kai Hock and Andy Wolski

A few surprises …

Page 8: ILC Damping Ring Wolski (2007) Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings Kai Hock and Andy Wolski

Mode Frequency Spectra

Turn 90

Parametric force

High frequency oscillation comes from …

Page 9: ILC Damping Ring Wolski (2007) Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings Kai Hock and Andy Wolski

Mode Coupling

Decay modes grow because …

Growth mode

Decay mode

Decay mode

?

Page 10: ILC Damping Ring Wolski (2007) Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings Kai Hock and Andy Wolski

Bunch Trajectories

Equation of motion

Analytic solution (Thompson, Ruth 1991)

Incomplete – Zero wake field limit is SHM, need – Else cannot have arbitrary

ti le

)0(),0( xx

Page 11: ILC Damping Ring Wolski (2007) Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings Kai Hock and Andy Wolski

tin

n

titi nba

eCBeAey)()()(~

Characteristic Equation

tieyty

)0(~)(~

iM

ni

n

N

n

eeb2

1

22

Elementary solution

22

1

22

iM

ni

n

N

n

eeb

Contour plot

General solution

If beta function is constant:

Page 12: ILC Damping Ring Wolski (2007) Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings Kai Hock and Andy Wolski

Integration of

Depends on initial history

Page 13: ILC Damping Ring Wolski (2007) Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings Kai Hock and Andy Wolski

tin

n

titi nba

eCBeAey)()()(~

titi ba

BeAey)()(~

If wake field very small

Conjecture

Depends on initial conditionat t = 0

Depends on initial history

Just like SHM

Page 14: ILC Damping Ring Wolski (2007) Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings Kai Hock and Andy Wolski

1

0

2)()(1

)(M

M

mititi

m eeBeAM

tyba

An analytic solution

Conjecture validated

Page 15: ILC Damping Ring Wolski (2007) Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings Kai Hock and Andy Wolski

H()

Rogers (2006)

Feedback system bandwidth

Frequency mode number Bandwidth must cover growth modesIf decay modes grow unexpectedly …

Page 16: ILC Damping Ring Wolski (2007) Dynamics with Transverse Coupled-Bunch Wake Fields in the ILC Damping Rings Kai Hock and Andy Wolski