The ATF2 project is the final focus system prototype for the ILC and CLIC linear collider projects, with a purpose of reaching a 37 nm vertical beam size at the interaction point (JP). During the initial commissioning, we started with larger-than-nominal beta-functions at the IP in order to reduce the effects from higher-order optical aberrations and thereby simplifying the optical corrections needed. We report on the simulation studies at two different IP locations developed based on waist scan, dispersion, coupling and beta function multiknobs correction in the large beta optics of ATF2, in the presence of two kinds of magnet inaccuracies (quadrupole gradient and roll errors) to generate all possible linear optic distortions at the IP. A ...
A nanometer beam size at the interaction point (IP) is required for future linear colliders to achie...
At the first stage of the ATF2 beam tuning, vertical beam size is usually bigger than 3 {micro}m at ...
AbstractIn future linear colliders, extremely small beam size is required at collision point for hig...
The ATF2 project is the final focus system prototype for the ILC and CLIC linear collider projects, ...
THPD096International audienceThe ATF2 project is the final focus system prototype for ILC and CLIC l...
TH6PFP024International audienceThe ATF2 project is the final focus system prototype for ILC and CLIC ...
The ATF2 project is the final focus system prototype for the ILC and CLIC linear collider projects, ...
In this paper, the linear and second order optics corrections for the KEK Accelerator Test Facility ...
A nanometer beam size at the interaction point (IP) is required for future linear colliders to achie...
The next generation of future linear colliders (LC) demands nano-meter beam sizes at the interaction...
The Accelerator Test Facility 2 (ATF2) aims to test the novel chromaticity correction scheme which i...
A nanometer beam size at the interaction point (IP) is required for future linear colliders to achie...
At the first stage of the ATF2 beam tuning, vertical beam size is usually bigger than 3 {micro}m at ...
AbstractIn future linear colliders, extremely small beam size is required at collision point for hig...
The ATF2 project is the final focus system prototype for the ILC and CLIC linear collider projects, ...
THPD096International audienceThe ATF2 project is the final focus system prototype for ILC and CLIC l...
TH6PFP024International audienceThe ATF2 project is the final focus system prototype for ILC and CLIC ...
The ATF2 project is the final focus system prototype for the ILC and CLIC linear collider projects, ...
In this paper, the linear and second order optics corrections for the KEK Accelerator Test Facility ...
A nanometer beam size at the interaction point (IP) is required for future linear colliders to achie...
The next generation of future linear colliders (LC) demands nano-meter beam sizes at the interaction...
The Accelerator Test Facility 2 (ATF2) aims to test the novel chromaticity correction scheme which i...
A nanometer beam size at the interaction point (IP) is required for future linear colliders to achie...
At the first stage of the ATF2 beam tuning, vertical beam size is usually bigger than 3 {micro}m at ...
AbstractIn future linear colliders, extremely small beam size is required at collision point for hig...