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C$^3$: A "Cool" Route to the Higgs Boson and Beyond
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abstract
We present a proposal for a cold copper distributed coupling accelerator that can provide a rapid route to precision Higgs physics with a compact 8 km footprint. This proposal is based on recent advances that increase the efficiency and operating gradient of a normal conducting accelerator. This technology also provides an $e^{+}e^{-}$ collider path to physics at multi-TeV energies. In this article, we describe our vision for this technology and the near-term R&D program needed to pursue it.
Forward citations
Cited by 2 Pith papers
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Multi-Objective Optimizations of High Gradient C-band Photoinjector for High Bunch Charge Applications
Simulations show that using an aperture to discard outer beam particles (sacrificial charge) can halve the emittance of a 250 pC bunch from a 240 MV/m C-band photoinjector, reaching about 58 nm.
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Evaluating the Impact of Detector Design on Jet Flavor Tagging for Future Colliders
A fast-simulation study shows detectors with time-of-flight and cluster-counting particle ID tag strange jets up to 2.5 times better than SiD, while calorimeter resolution variations barely affect jet flavor tagging.
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