The International Linear Collider (ILC), which is based on super-conducting RF acceleration technology, requires the damping rings to provide beams with extremely small equilibrium emittance, and large acceptance to ensure good injection efficiency for high-emittance, and high-energy spread beam from the positron source. In order to reduce the cost for ILC damping rings, an alternative lattice which is different from the baseline configuration design has been designed with modified FODO arc cells, and the total quadrupole number has been reduced by half. At the same time, to decrease the total cost involved in constructing access shafts needed to supply power, cryogenics etc. for the wigglers and other systems, the number of wiggler section...
We report on the lattice design of the Next Linear Collider (NLC) damping rings. The damping rings ...
We report on the lattice design of the Next Linear Collider (NLC) damping rings. The damping rings a...
As part of the international Linear Collider (ILC) collaboration, we have compared the electron clou...
The ILC damping rings should provide beams with very low natural emittances for the linear collider ...
The ILC damping rings should provide beams with very low natural emittances for the linear collider ...
In this paper, we present a new lattice design for the International Linear Collider (ILC) positron ...
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...
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 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-...
Previous lattice designs for the Next Linear Collider Main Damping Rings [1] have met the specificat...
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 ...
We report on the lattice design of the Next Linear Collider (NLC) damping rings. The damping rings a...
As part of the international Linear Collider (ILC) collaboration, we have compared the electron clou...
The ILC damping rings should provide beams with very low natural emittances for the linear collider ...
The ILC damping rings should provide beams with very low natural emittances for the linear collider ...
In this paper, we present a new lattice design for the International Linear Collider (ILC) positron ...
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...
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 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-...
Previous lattice designs for the Next Linear Collider Main Damping Rings [1] have met the specificat...
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 ...
We report on the lattice design of the Next Linear Collider (NLC) damping rings. The damping rings a...
As part of the international Linear Collider (ILC) collaboration, we have compared the electron clou...