The ILC damping rings should provide beams with very low natural emittances for the linear collider to reach the required luminosity, and at the same time, the damping rings also need to have a large acceptance to ensure good injection efficiency for high emittance, high energy spread beam from the positron source. Meeting the above requirements is a real challenge for the ILC damping ring lattice design. In order to reduce the cost for ILC damping rings, an alternative lattice different from the baseline configuration design has been done with modified FODO cells, and the total quadrupole number has been reduced by half. The new lattice has been optimised to have good dynamic apertures.Physics, NuclearPhysics, Particles & FieldsSCI(E)0...
We describe a simple lattice that meets the specifications for the damping times and horizontal and...
The positron source for the Next Linear Collider (NLC) will produce a beam larger than the acceptanc...
Abstract: The NLC positron source is specified to produce a beam of normalized edge emittance 30,00...
The ILC damping rings should provide beams with very low natural emittances for the linear collider ...
The International Linear Collider (ILC), which is based on super-conducting RF acceleration technolo...
In this paper, we present a new lattice design for the International Linear Collider (ILC) positron ...
The ILC damping rings will need a large acceptance to ensure good injection efficiency for the high-...
The ILC damping rings will need a large acceptance to ensure good injection efficiency for the high-...
In order to reduce the cost for ILC damping rings, an alternative lattice which is different from th...
In order to reduce the cost for ILC damping rings, an alternative lattice which is different from th...
The Damping Rings for the International Linear Collider have challenging requirements for the accept...
The Damping Rings for the International Linear Collider have challenging requirements for the accept...
We report on the lattice design of the Next Linear Collider (NLC) damping rings. The damping rings a...
We report on the lattice design of the Next Linear Collider (NLC) damping rings. The damping rings ...
We describe a simple lattice that meets the specifications for the damping times and horizontal and ...
We describe a simple lattice that meets the specifications for the damping times and horizontal and...
The positron source for the Next Linear Collider (NLC) will produce a beam larger than the acceptanc...
Abstract: The NLC positron source is specified to produce a beam of normalized edge emittance 30,00...
The ILC damping rings should provide beams with very low natural emittances for the linear collider ...
The International Linear Collider (ILC), which is based on super-conducting RF acceleration technolo...
In this paper, we present a new lattice design for the International Linear Collider (ILC) positron ...
The ILC damping rings will need a large acceptance to ensure good injection efficiency for the high-...
The ILC damping rings will need a large acceptance to ensure good injection efficiency for the high-...
In order to reduce the cost for ILC damping rings, an alternative lattice which is different from th...
In order to reduce the cost for ILC damping rings, an alternative lattice which is different from th...
The Damping Rings for the International Linear Collider have challenging requirements for the accept...
The Damping Rings for the International Linear Collider have challenging requirements for the accept...
We report on the lattice design of the Next Linear Collider (NLC) damping rings. The damping rings a...
We report on the lattice design of the Next Linear Collider (NLC) damping rings. The damping rings ...
We describe a simple lattice that meets the specifications for the damping times and horizontal and ...
We describe a simple lattice that meets the specifications for the damping times and horizontal and...
The positron source for the Next Linear Collider (NLC) will produce a beam larger than the acceptanc...
Abstract: The NLC positron source is specified to produce a beam of normalized edge emittance 30,00...