The design of the region close to the interaction point of the FCC-ee experiments is especially challenging. The beams collide at an angle (±15mrad) in a region where the detector solenoid magnetic field is large. Moreover, the very low vertical β^{*} of the machine necessitates that the final focusing quadrupoles are also inside this high field region. The beams should be screened from the effect of the detector solenoid field, and the emittance blow-up due to vertical dispersion in the interaction region should be minimized while leaving enough space for detector components. Crosstalk between the two final focus quadrupoles, only about 6 cm apart at the tip, should also be minimized. We present an update on the subject
The beam optics for the FCC-ee collider has been updated: (a) the layout is adjusted to a new footpr...
The primary goal of the interaction region (IR) is to demagnify the transverse beam dimension to a s...
The international Future Circular Collider (FCC) study aims at a design of $pp$, $e^+e^-$, $ep$ coll...
The design of the region close to the interaction point of the FCC-ee experiments is especially chal...
We present an improved design for a SuperB interaction region. The new design minimizes local bendin...
International audienceThe FCC-ee is a proposed future high-energy, high-intensity and high precision...
The interaction region layout for the e^{+}e^{-} future circular collider FCC-ee is presented togeth...
The FCC-ee machine induced backgrounds on the two proposed detectors (CLD and IDEA) have been studie...
The goals of FCC-ee include reaching luminosities of up to a few 1036 cm-2s-1 per interaction point ...
The FCC-ee study is investigating the design of a 100 km e⁺/e⁻ circular collider for precision measu...
The primary goal of the interaction region (IR) is to de-magnify the transverse beam dimension to a ...
DESY pursues a luminosity upgrade project [1] for the HERA electron proton collider with the goal to...
The FCC-ee project is a high-luminosity circular electron-positron collider envisioned to operate at...
We report the design status and beam dynamics challenges for the electron-positron branch of the Fut...
The primary goal of the interaction region (IR) is to de-magnify the transverse beam dimension to a ...
The beam optics for the FCC-ee collider has been updated: (a) the layout is adjusted to a new footpr...
The primary goal of the interaction region (IR) is to demagnify the transverse beam dimension to a s...
The international Future Circular Collider (FCC) study aims at a design of $pp$, $e^+e^-$, $ep$ coll...
The design of the region close to the interaction point of the FCC-ee experiments is especially chal...
We present an improved design for a SuperB interaction region. The new design minimizes local bendin...
International audienceThe FCC-ee is a proposed future high-energy, high-intensity and high precision...
The interaction region layout for the e^{+}e^{-} future circular collider FCC-ee is presented togeth...
The FCC-ee machine induced backgrounds on the two proposed detectors (CLD and IDEA) have been studie...
The goals of FCC-ee include reaching luminosities of up to a few 1036 cm-2s-1 per interaction point ...
The FCC-ee study is investigating the design of a 100 km e⁺/e⁻ circular collider for precision measu...
The primary goal of the interaction region (IR) is to de-magnify the transverse beam dimension to a ...
DESY pursues a luminosity upgrade project [1] for the HERA electron proton collider with the goal to...
The FCC-ee project is a high-luminosity circular electron-positron collider envisioned to operate at...
We report the design status and beam dynamics challenges for the electron-positron branch of the Fut...
The primary goal of the interaction region (IR) is to de-magnify the transverse beam dimension to a ...
The beam optics for the FCC-ee collider has been updated: (a) the layout is adjusted to a new footpr...
The primary goal of the interaction region (IR) is to demagnify the transverse beam dimension to a s...
The international Future Circular Collider (FCC) study aims at a design of $pp$, $e^+e^-$, $ep$ coll...