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The future circular colliders considered under the FCC study compared to previous circular colliders. The Future Circular Collider (FCC) is a proposed particle accelerator with an energy significantly above that of previous circular colliders, such as the Super Proton Synchrotron, the Tevatron, and the Large Hadron Collider (LHC).
Because the Higgs boson has a relatively light mass of 125 GeV, circular electron-positron collider designs can be applied for the construction of a Higgs factory as well. Two circular designs under consideration are the Future Circular Collider (FCC-ee) at CERN and the Circular Electron Positron Collider (CEPC) in China. [4]
Her future work includes searching for signs of new physics by using the Large Hadron Collider (LHC) and the Future Circular e+e- Collider (FCC-ee) at CERN. [3] [4]
The collider’s reopening (it’s been closed since 2018) is an important event for global science, as what is generally considered one of the biggest science experiments ever conducted has ...
Trump “has made it clear that he expects these nations in the region to step up and to accept Palestinian refugees who are temporarily relocated for the rebuilding of Gaza,” White House press ...
CERN has several preliminary designs for a Future Circular Collider (FCC)—which would be the most powerful particle accelerator ever built—with different types of collider ranging in cost from around €9 billion (US$10.2 billion) to €21 billion. It would use the LHC ring as preaccelerator, similar to how the LHC uses the smaller Super ...
Manchester United has told fans it cannot sustain its current financial losses and risks breaching Premier League rules after facing a backlash over rising ticket prices. The record 20-time ...
The Circular Electron Positron Collider (CEPC) is a proposed Chinese electron positron collider for experimenting on the Higgs boson. It would be the world's largest particle accelerator with a circumference of 100 kilometres (62 mi). [1] CEPC was proposed by the Chinese Academy of Sciences' Institute of High Energy Physics in 2012.