To avoid radiation damage, the acceptance of linear collider damping rings must be large enough that injection efficiency close to 100 percent can be achieved. Survival plots based on tracking particles in the NLC Main Damping Ring lattice suggest a dynamic aperture with some margin over the specified injected beam size and energy spread. Here, we apply Frequency Map Analysis to give a more detailed picture of the dynamical stability of particle trajectories in the presence of lattice nonlinearities arising from the sextupoles and the damping wiggler. The techniques that we use are of general applicability to nonlinear elements in beamlines, and in particular will be used for analysis of wiggler effects in future damping ring designs
Previous lattice designs for the Next Linear Collider Main Damping Rings [1] have met the specificat...
Because of tight requirements on beam quality longitudinal single-bunch instabilities are a serious ...
Abstract: We present a lattice design for the NLC Main Damping Rings at 120 Hz repetition rate. A to...
To avoid radiation damage, the acceptance of linear collider damping rings must be large enough tha...
Wiggler insertions are expected to occupy a significant portion of the lattice of the Next Linear C...
Wiggler insertions are expected to occupy a significant portion of the lattice of the Next Linear Co...
A sufficiently large acceptance is critical for the NLC Main Damping Rings (MDR) as the high power c...
A sufficiently large acceptance is critical for the NLC Main Damping Rings (MDR) as the high power c...
A sufficiently large acceptance is critical for the NLC Main Damping Rings (MDR) as the high power ...
As they are expected to occupy a large portion of the lattice, wiggler insert ions will introduce si...
As they are expected to occupy a large portion of the lattice, wiggler insert ions will introduce s...
To achieve the required damping time in the main damping rings for the Next Linear Collider (NLC), a...
The beam is injected into the CLIC damping ring with the relatively large emittance and energy sprea...
To achieve the required damping time in the main damping rings for the Next Linear Collider (NLC), ...
Designing a lattice with sufficient dynamic aperture for the ILCDamping Rings is very challenging a...
Previous lattice designs for the Next Linear Collider Main Damping Rings [1] have met the specificat...
Because of tight requirements on beam quality longitudinal single-bunch instabilities are a serious ...
Abstract: We present a lattice design for the NLC Main Damping Rings at 120 Hz repetition rate. A to...
To avoid radiation damage, the acceptance of linear collider damping rings must be large enough tha...
Wiggler insertions are expected to occupy a significant portion of the lattice of the Next Linear C...
Wiggler insertions are expected to occupy a significant portion of the lattice of the Next Linear Co...
A sufficiently large acceptance is critical for the NLC Main Damping Rings (MDR) as the high power c...
A sufficiently large acceptance is critical for the NLC Main Damping Rings (MDR) as the high power c...
A sufficiently large acceptance is critical for the NLC Main Damping Rings (MDR) as the high power ...
As they are expected to occupy a large portion of the lattice, wiggler insert ions will introduce si...
As they are expected to occupy a large portion of the lattice, wiggler insert ions will introduce s...
To achieve the required damping time in the main damping rings for the Next Linear Collider (NLC), a...
The beam is injected into the CLIC damping ring with the relatively large emittance and energy sprea...
To achieve the required damping time in the main damping rings for the Next Linear Collider (NLC), ...
Designing a lattice with sufficient dynamic aperture for the ILCDamping Rings is very challenging a...
Previous lattice designs for the Next Linear Collider Main Damping Rings [1] have met the specificat...
Because of tight requirements on beam quality longitudinal single-bunch instabilities are a serious ...
Abstract: We present a lattice design for the NLC Main Damping Rings at 120 Hz repetition rate. A to...